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COVID-19 Impact on Global Precision Medicine Industry 2020: Market Trends, Size, Applications, SWOT Analysis by Top Key Players and Forecast Report to…

May 31st, 2020 3:49 pm

Precision Medicine Market2019 Industry Research Report provides important statistics, analytical and comparative data to give a complete understanding of the market Share, Size, Growth, Rising Trends and Cost Structure analysis.

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This report offers in-depth information obtained through extensive primary and secondary research methods. The information has been further assessed using various effective analytical tools.

The report puts special emphasis on the most important details of the Global Precision Medicine Market Report 2019 market, filtered out with the help of industry-best analytical methods

Regionally, North America, Latin America, Europe, Asia Pacific, And The Middle East & Africa constitute the key market segments.

Top Key Players Analyzed in Global Precision Medicine Marketare

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Major Points Covered in Table of Contents:

7 Global Precision Medicine Market By Product Type

8 Global Precision Medicine Market By Applications

9 Global Precision Medicine Market By Region

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COVID-19 Impact on Global Precision Medicine Industry 2020: Market Trends, Size, Applications, SWOT Analysis by Top Key Players and Forecast Report to...

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Rapid Growth on Genetic Testing Market with COVID-19 Impact Analysis, Top Key Companies like Abbott Laboratories Bio-Rad Laboratories Inc.,…

May 31st, 2020 3:49 pm

The Global Genetic Testing Market is expected to register substantial growth in the near future due to rise in incidence of genetic disorders & cancer and growth in awareness and acceptance of personalized medicines.

Genetic testing is also known as DNA testing. Genetic testing is the study of gene present in cells and tissues. This study is further applied in the field of biology and medicine to better understand genetic disorders such as cancer, sickle cell anemia, cystic fibrosis, Down syndrome, and others. The scope of the report discusses the use of gene tests for the development of personalized medicine, targeted cancer treatment, and other genetic diseases.

In addition, advancements in genetic testing techniques and increasing application of genetic testing in oncology are expected to boost the market growth during the forecast period.Genetic tests involve a set of lab tests for the study of the genetic makeup of patients and identify any gene mutations and alterations in the healthy structure of DNA leading to the development of genetic disorders. The Geographical Segmentation includes study of global regions such as North America, Latin America, Asia-Pacific, Africa, and Europe. The report is designed to incorporate both qualitative and quantitative aspects of the industry within each of the regions and countries involved in the study.

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Genetic Testing Key Market Segments:

By Product Type:

By Technology Type:

By Application Type:

Different top-level key players are also enlisted in order to obtain in-depth knowledge and informative data of companies. Some of the key players are also profiled in this research report, which includes Genetic Testing Market. Different industry analysis tools such as SWOT and Porters five-technique are further used while analyzing the global Genetic Testing Market.

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The report also draws attention to recent advancements in technologies and certain methodologies which further help to boost the outcome of the businesses. Furthermore, it also offers a comprehensive data of cost structure such as the cost of manpower, tools, technologies, and cost of raw material. The report is an expansive source of analytical information of different business verticals such as type, size, applications, and end-users.

Furthermore, the report also caters the detailed information about the crucial aspects such as driving factors & challenges which will define the future growth of the market.

Table of Content:

Chapter 1:Genetic Testing Market Overview

Chapter 2: Global Economic Impact on Industry

Chapter 3:Genetic Testing Market Competition by Manufacturers

Chapter 4: Global Production, Revenue (Value) by Region

Chapter 5: Global Supply (Production), Consumption, Export, Import by Regions

Chapter 6: Global Production, Revenue (Value), Price Trend by Type

Chapter 7: Global Market Analysis by Application

Chapter 8: Manufacturing Cost Analysis

Chapter 9: Industrial Chain, Sourcing Strategy and Downstream Buyers

Chapter 10: Marketing Strategy Analysis, Distributors/Traders

Chapter 11: Genetic Testing Market Effect Factors Analysis

Chapter 12: GlobalGenetic Testing Market Forecast to 2025

Finally, all aspects of the Genetic Testing Market are quantitatively as well qualitatively assessed to study the Global as well as regional market comparatively. This market study presents critical information and factual data about the market providing an overall statistical study of this market on the basis of market drivers, limitations and its future prospects.

About Us:Market Research Inc is farsighted in its view and covers massive ground in global research. Local or global, we keep a close check on both markets. Trends and concurrent assessments sometimes overlap and influence the other. When we say market intelligence, we mean a deep and well-informed insight into your products, market, marketing, competitors, and customers. Market research companies are leading the way in nurturing global thought leadership. We help your product/service become the best they can with our informed approach.

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Coronavirus threat to global Regenerative Medicine Market boosting the growth Worldwide: Market dynamics and trends, efficiencies Forecast 2023 – News…

May 31st, 2020 3:48 pm

The global Regenerative Medicine market study presents an all in all compilation of the historical, current and future outlook of the market as well as the factors responsible for such a growth. With SWOT analysis, the business study highlights the strengths, weaknesses, opportunities and threats of each Regenerative Medicine market player in a comprehensive way. Further, the Regenerative Medicine market report emphasizes the adoption pattern of the Regenerative Medicine across various industries.

The Regenerative Medicine market report examines the operating pattern of each player new product launches, partnerships, and acquisitions has been examined in detail.

The report on the Regenerative Medicine market provides a birds eye view of the current proceeding within the Regenerative Medicine market. Further, the report also takes into account the impact of the novel COVID-19 pandemic on the Regenerative Medicine market and offers a clear assessment of the projected market fluctuations during the forecast period.

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Regional and Country-level AnalysisThe report offers an exhaustive geographical analysis of the global Regenerative Medicine market, covering important regions, viz, North America, Europe, China, Japan, Southeast Asia, India and Central & South America. It also covers key countries (regions), viz, U.S., Canada, Germany, France, U.K., Italy, Russia, China, Japan, South Korea, India, Australia, Taiwan, Indonesia, Thailand, Malaysia, Philippines, Vietnam, Mexico, Brazil, Turkey, Saudi Arabia, UAE, etc.The report includes country-wise and region-wise market size for the period 2015-2026. It also includes market size and forecast by each application segment in terms of revenue for the period 2015-2026.Competition AnalysisIn the competitive analysis section of the report, leading as well as prominent players of the global Regenerative Medicine market are broadly studied on the basis of key factors. The report offers comprehensive analysis and accurate statistics on revenue by the player for the period 2015-2020. It also offers detailed analysis supported by reliable statistics on price and revenue (global level) by player for the period 2015-2020.On the whole, the report proves to be an effective tool that players can use to gain a competitive edge over their competitors and ensure lasting success in the global Regenerative Medicine market. All of the findings, data, and information provided in the report are validated and revalidated with the help of trustworthy sources. The analysts who have authored the report took a unique and industry-best research and analysis approach for an in-depth study of the global Regenerative Medicine market.The following players are covered in this report:DePuy SynthesMedtronicZimmerBiometStrykerAcelityMiMedx GroupOrganogenesisUniQureCellular Dynamics InternationalOsiris TherapeuticsVcanbioGamida CellGolden MeditechCytoriCelgeneVericel CorporationGuanhao BiotechMesoblastStemcell TechnologiesBellicum PharmaceuticalsRegenerative Medicine Breakdown Data by TypeCell TherapyTissue EngineeringBiomaterialOtherRegenerative Medicine Breakdown Data by ApplicationDermatologyCardiovascularCNSOrthopedicOthers

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The Regenerative Medicine market report offers a plethora of insights which include:

The Regenerative Medicine market report answers important questions which include:

The Regenerative Medicine market report considers the following years to predict the market growth:

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Why Choose Regenerative Medicine Market Report?

Regenerative Medicine Market Reportfollows a multi- disciplinary approach to extract information about various industries. Our analysts perform thorough primary and secondary research to gather data associated with the market. With modern industrial and digitalization tools, we provide avant-garde business ideas to our clients. We address clients living in across parts of the world with our 24/7 service availability.

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Athens hospital using biologic treatment on COVID-19 patients – Online Athens

May 31st, 2020 3:48 pm

A local hospital is using a little-known medicine to treat COVID-19 patients after the FDA authorized compassionate use approval to administer the drug.

Landmark Hospital of Athens treated two patients with its first doses of the medicine last week, according to a press release from Landmark Hospitals, which operates six long-term acute-care hospitals in the Southeast, including its Athens hospital on Sunset Drive.

The medicine, called Organicell Flow, is a biologic product derived from amniotic fluid, which contains stem cells. Amniotic fluid is the protective fluid in the sac containing growing fetuses.

Landmark is providing the product to patients with advanced COVID-19 conditions, according to the company.

After receiving Organicell Flow intravenously last week, the two patients were clinically stable as of Wednesday, according to Landmark.

Organicell Regenerative Medicine of Boca Raton, Fla., manufactures the medicine from human amniotic fluid voluntarily donated during Cesarean section surgeries, according to Landmark.

Developed to promote wound healing, Organicell Flow contains more than 300 growth factors, cytokines and chemokines, as well as hyaluronic acid and exosomes, according to the press release.

The medicine can modulate a patients immune response. In some COVID-19 patients, their supercharged immune response can be as harmful as the actual coronavirus that causes COVID-19.

The condition, called cytokine storm syndrome, can damage lungs and other organs and can lead to death, said Landmark Hospitals Chairman Dr. William Kapp.

The data collected from the patients receiving compassionate use treatments will guide us to interventions that modulate COVID-19 immune response in the lungs and reduce systemic organ damage, Kapp said in Landmarks press release.

Organicell Flow is one of a number of medicines health providers around the world are trying out to treat COVID-19, which has claimed more than 100,000 lives in the United States so far and nearly 2,000 in Georgia.

Two other Athens hospitals have also recently received shipments of another drug that may help patients with COVID-19, remdesivir.

Gov. Brian Kemp announced earlier this week that the state was distributing more than 18,000 vials of remdesivir to more than 80 Georgia hospitals, enough to treat nearly 17,000 patients. The hospitals include Athens St. Marys Healthcare System and the Piedmont system that includes Piedmont Athens Regional and several other Georgia hospitals.

Remdesivir is being used to treat patients with serious symptoms such as low oxygen levels or pneumonia, according to the Georgia Department of Public Health.

Developed to treat people with Ebola virus disease, remdesivir has been shown to shorten the time of recovery from COVID-19 illness in hospitalized patients, but in the absence of thorough studies is considered investigational.

Standard treatment for COVID-19 includes oxygen therapy, mechanical ventilation and medicine to maintain blood pressure.

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New human-mouse chimera is the most human yet – Livescience.com

May 31st, 2020 3:48 pm

A newly-created mouse-human embryo contains up to 4% human cells the most human cells yet of any chimera, or an organism made of two different sets of DNA.

Surprisingly, those human cells could learn from the mouse cells and develop faster at the pace of a mouse embryo rather than a more slowly developing human embryo. That finding was "very serendipitous We did not really foresee that," said senior author Jian Feng, a professor in the department of physiology and biophysics at the State University of New York at Buffalo.

Successfully growing human cells in mouse embryos might one day help scientists understand the growth and aging process of our bodies and how diseases such as COVID-19 damage cells and could eventually even serve as a scaffold to grow organs for transplantation, Feng said.

Related: The 9 most interesting transplants

Feng and his team tackled a long-standing issue in creating such chimeras: that in order for human embryonic stem cells and mouse embryonic stem cells to chat and mingle, they needed to be in the same state of development. Embryonic stem cells are pluripotent, meaning they can develop into any type of cell in the body.

But "the human embryonic stem cell looks and behaves very differently from the mouse embryonic stem cell," so past attempts to get them to comingle have all failed, Feng told Live Science. At first, researchers thought the failures were due to some kind of species barrier; but after many years of study, they realized that it wasn't a species issue, but rather a maturity one.

The human stem cells were in a later stage of development called a "primed" state, which normally occurs only after the human embryo has already been implanted in the uterine wall. In contrast, the mouse stem cells were in a more "naive" state, which normally occurs when the mouse embryo is still floating around in the fallopian tubes. In the past, researchers weren't able to convert human cells back to this naive state, Feng said.

In their experiments, Feng and his team were inspired by a process called "embryonic diapause" that occurs in hundreds of mammals from bears to mice: When there's some sort of hardship such as a famine or shortage of water, some animals' embryos can remain in the naive state inside a mother's fallopian tubes for months and sometimes over a year for the environment to become more suitable, Feng said.

It's not clear what triggers the embryos to pause in this state, but a protein called mTOR seems to be a sensor that detects when conditions are bad, he said. Feng and his team figured out that they could target this protein inside human stem cells to make the cells think that they were experiencing famine, and needed to jump to a more naive state where they could conserve energy, Feng said.

The protein mTOR normally promotes the production of proteins and other molecules to support cell growth and proliferation, so by inhibiting it, Feng and his team "shocked" the human cells into changing their metabolism and gene expression. "So it behaves pretty much like the mouse cell," Feng said. What resulted was a naive set of human stem cells that could be cultured together with mouse stem cells and "intermingle very nicely," Feng said. The researchers then injected 10 to 12 of these naive human stem cells into mouse embryos.

In most of the mouse embryos, the naive human stem cells successfully developed into mature human cells in all three germ layers: the ectoderm, or the primary cell layers that develop when the embryo is growing and which later develop to form hair, nails, the epidermis and nerve tissue; the mesoderm, or the cells that make up the organs; and the endoderm, or the inner lining of organs. But no human cells spilled over into germline tissue, which develops into egg and sperm cells.

These germ layers then developed into more differentiated cells, and when the researchers stopped their experiment on the 17th day, 14 embryos were between 0.1% and 4% human (some had less human cells and some had more), with human cells found through the embryo, including in the liver, heart, retina and red blood cells.

Related: First pig-monkey chimeras were just created in China

But what was really "surprising" was the speed at which the human cells developed, Feng said. For example, the embryos were able to generate human red blood cells in 17 days, compared to the roughly 56 days red blood cells take to develop in a growing human embryo. Similarly, human eye cells don't develop until much later on in the embryo, whereas within 17 days, human eye cells including photo receptors formed in the chimera. Basically, the human cells "assumed the clock of the mouse embryo," Feng said. Previously, scientists thought this accelerated development was impossible because the tempo of human cell development was always thought to be "kind of immutable," he added.

This paper identifies a "novel way" of turning primed human pluripotent stem cells into a naive state, said Ronald Parchem, an assistant professor in the Stem Cells and Regenerative Medicine Center at Baylor College of Medicine in Texas, who was not a part of the study. But "the level of chimerism is low in this study," compared to another study that developed chimeras with up to 20% human cells per embryo, he said. That study, however, was published to the preprint database Biorxiv on May 24,and hasn't yet been peer-reviewed. "Together, these studies provide insight into capturing pluripotent states in vitro and highlight the barriers preventing successful cross-species chimerism," Parchem said. "Identifying ways to overcome these barriers has the potential to improve regenerative medicine."

These findings might "stimulate research" in the fundamental understanding of human development, especially how time is measured by biological systems, Feng said. Such chimeras could help scientists understand human diseases. For example, researchers might one day be able to regenerate human blood in a mouse model and study diseases such as malaria. Or if you can create human lung cells, or epithelial cells that line the respiratory tract, that mouse can become a "model system" for studying diseases like COVID-19, Feng said. In other words, mice with human cells can be infected with COVID-19 to understand how the virus attacks the body.

The most cited potential application of such chimeras is organ growth. But this likely won't happen in mice but much larger animals such as pigs, he said. Of course, these applications raise ethical issues, he added. One such ethical consideration is that chimeras blur the lines between species and that makes it difficult to determine the morality or the consciousness that those animals possess. For example, chimeras used in animal testing could be given too many human characteristics and have a similar moral status or consciousness to us, according to a previous Live Science report.

Feng said that much discussion needs to take place before such applications can be considered.

"This field requires much more exploration before this becomes a reality," said Carol Ware, the associate director at the University of Washington's Institute for Stem Cell and Regenerative Medicine, who was also not a part of the study. "A couple of the primary hurdles at this point are determining the host species for these human cells," and public acceptance in the work, she added.

"At this point, it would seem that the speed with which this clinical opportunity will become a reality will not be hindered by the ability to grow human organs," she added. "I would have liked to see," what happens when mTOR is taken away inside the lab dish and these naive human cells are allowed to advance again, particularly to see if some key cellular processes resume again, she added.

The findings were published in the journal Science Advances on May 13.

Originally published on Live Science.

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Research at MDI Biological Laboratory explores novel pathways of regeneration and tumorigenesis – Bangor Daily News

May 31st, 2020 3:48 pm

BAR HARBOR Research by scientists at the MDI Biological Laboratoryis opening up new approaches to promoting tissue regeneration in organs damaged by disease or injury.

In recent years, research in regenerative biology has focused on stem cell therapies that reprogram the bodys own cells to replace damaged tissue, which is a complicated process because it involves turning genes in the cells nucleus on and off.

A recent paper in the journal Genetics by MDI Biological Laboratory scientist Elisabeth Marnik, Ph.D., a postdoctoral fellow in the laboratory of Dustin Updike, Ph.D., offers insight into an alternate pathway to regeneration: by recreating the properties of germ cells.

Germ cells, which are the precursors to the sperm and egg, are considered immortal because they are the only cells in the body with the potential to create an entirely new organism. The stem cell-like ability of germ cells to turn into any type of cell is called totipotency.

By getting a handle on what makes germ cells totipotent, we can promote regeneration by unlocking the stem cell-like properties of other cell types, said Updike. Our research shows that such cells can be reprogrammed by manipulating their cytoplasmic composition and chemistry, which would seem to be safer and easier than changing the DNA within a cells nucleus.

Using the tiny, soil-dwelling nematode worm, C. elegans, as a model, the Updike lab studies organelles called germ granules that reside in the cytoplasm (the contents of the cell outside of the nucleus) of germ cells. These organelles, which are conserved from nematodes to humans, are one of the keys to the remarkable attributes of germ cells, including the ability to differentiate into other types of cells.

In their recent paper entitled Germline Maintenance Through the Multifaceted Activities of GLH/Vasa in Caenorhabditis elegans P Granules, Updike and his team describe the intriguing and elusive role of Vasa proteins within germ granules in determining whether a cell is destined to become a germ cell with totipotent capabilities or a specific type of cell, like those that comprise muscle, nerves or skin.

Because of the role of Vasa proteins in preserving totipotency, an increased understanding of how such proteins work could lead to unprecedented approaches to de-differentiating cell types to promote regeneration; or alternatively, to new methods to turn off totipotency when it is no longer desirable, as in the case of cancer.

The increase in chronic and degenerative diseases caused by the aging of the population is driving demand for new therapies, said MDI Biological Laboratory President Hermann Haller, M.D. Dustins research on germ granules offers another route to repairing damaged tissues and organs in cases where therapeutic options are limited or non-existent, as well as an increased understanding of cancer.

Because of the complexity of the cellular chemistry, research on Vasa and other proteins found in germ granules is often overlooked, but that is rapidly changing especially among pharmaceutical companies as more scientists realize the impact and potential of such research, not only for regenerative medicine but also for an understanding of tumorigenesis, or cancer development, Updike said.

Recent research has found that some cancers are accompanied by the mis-expression of germ granule proteins, which are normally found only in germ cells. The mis-expression of these germ-granule proteins seems to promote the immortal properties of germ cells, and consequently tumorigenesis, with some germ-granule proteins now serving as prognosis markers for different types of cancer, Updike said.

Updike is a former postdoctoral researcher in the laboratory of Susan Strome, Ph.D., at University of California, Santa Cruz. Strome, who was inducted into the National Academy of Sciences last year, first discovered P granules more than 30 years ago. She credits Updike, who has published several seminal papers on the subject, with great imagination, determination and excellent technical skill in the pursuit of his goal of elucidating the function and biochemistry of these tiny organelles.

The lead author of the new study from the Updike laboratory, Elisabeth A. Marnik, Ph.D., will be launching her own laboratory at Husson University in Bangor, Maine, this fall. Other contributors include J. Heath Fuqua, Catherine S. Sharp, Jesse D. Rochester, Emily L. Xu and Sarah E. Holbrook. Their research was conducted at the Kathryn W. Davis Center for Regenerative Biology and Medicine at the MDI Biological Laboratory.

Updikes research is supported by a grant (R01 GM-113933) from the National Institute of General Medical Sciences (NIGMS), an institute of the National Institutes of Health (NIH). The equipment and cores used for part of the study were supported by NIGMS-NIH Centers of Biomedical Research Excellence and IDeA Networks of Biomedical Research Excellence grants P20 GM-104318 and P20 GM-203423, respectively.

We aim to improve human health and healthspan by uncovering basic mechanisms of tissue repair, aging and regeneration, translating our discoveries for the benefit of society and developing the next generation of scientific leaders. For more information, please visitmdibl.org.

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Impact of Covid-19 Outbreak on Regenerative Medicine Market 2020 Trends, Growth Opportunities, Demand, Application, Top Companies and Industry…

May 31st, 2020 3:48 pm

A report, added to the extensive database of verified Market Research titled Regenerative Medicine Market 2020 by Manufacturer, Region, Type and Application, Forecast up to 2026, is intended to highlight first-hand documentation of all the best implementations in the industry. The report contains an in-depth analysis of current and future market trends, segmentation, industrial opportunities and the future market scenario, taking into account the forecast years 2020 to 2026. It contains extremely important details on the key players in the Regenerative Medicine market as well as growth-oriented practices, that they normally use. The report examines a number of growth drivers and limiting factors. The key forecast information by region, type and application with sales and revenue from 2020 to 2026 is included in this report.

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Top 10 Companies in the Regenerative Medicine Market Research Report:

Competitive landscape:

The report examines the major players, including the profiles of the major players in the market with a significant global and / or regional presence, combined with their information such as related companies, downstream buyers, upstream suppliers, market position, historical background and top competitors based on the Sales with sales contact information.

Regional Description:

The Regenerative Medicine market was analyzed and a proper survey of the market was carried out based on all regions of the world. The regions listed in the report include: North America (United States, Canada, and Mexico), Europe (Germany, France, United Kingdom, Russia, and Italy), Asia-Pacific (China, Japan, Korea, India, and Southeast Asia), South America (Brazil, Argentina , Colombia etc.), Middle East and Africa (Saudi Arabia, United Arab Emirates, Egypt, Nigeria and South Africa). All these regions have been studied in detail and the prevailing trends and different possibilities are also mentioned in the market report.

Sales and sales broken down by application:

Sales and sales divided by type:

In addition, the report categorizes product type and end uses as dynamic market segments that directly impact the growth potential and roadmap of the target market. The report highlights the core developments that are common to all regional hubs and their subsequent impact on the holistic growth path of the Regenerative Medicine market worldwide. Other valuable aspects of the report are the market development history, various marketing channels, supplier analysis, potential buyers and the analysis of the markets industrial chain.

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Table of Content

1 Introduction of Regenerative Medicine Market

1.1 Overview of the Market1.2 Scope of Report1.3 Assumptions

2 Executive Summary

3 Research Methodology of Verified Market Research

3.1 Data Mining3.2 Validation3.3 Primary Interviews3.4 List of Data Sources

4 Regenerative Medicine Market Outlook

4.1 Overview4.2 Market Dynamics4.2.1 Drivers4.2.2 Restraints4.2.3 Opportunities4.3 Porters Five Force Model4.4 Value Chain Analysis

5 Regenerative Medicine Market, By Deployment Model

5.1 Overview

6 Regenerative Medicine Market, By Solution

6.1 Overview

7 Regenerative Medicine Market, By Vertical

7.1 Overview

8 Regenerative Medicine Market, By Geography

8.1 Overview8.2 North America8.2.1 U.S.8.2.2 Canada8.2.3 Mexico8.3 Europe8.3.1 Germany8.3.2 U.K.8.3.3 France8.3.4 Rest of Europe8.4 Asia Pacific8.4.1 China8.4.2 Japan8.4.3 India8.4.4 Rest of Asia Pacific8.5 Rest of the World8.5.1 Latin America8.5.2 Middle East

9 Regenerative Medicine Market Competitive Landscape

9.1 Overview9.2 Company Market Ranking9.3 Key Development Strategies

10 Company Profiles

10.1.1 Overview10.1.2 Financial Performance10.1.3 Product Outlook10.1.4 Key Developments

11 Appendix

11.1 Related Research

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Verified Market Research is a leading Global Research and Consulting firm servicing over 5000+ customers. Verified Market Research provides advanced analytical research solutions while offering information enriched research studies. We offer insight into strategic and growth analyses, Data necessary to achieve corporate goals and critical revenue decisions.

Our 250 Analysts and SMEs offer a high level of expertise in data collection and governance use industrial techniques to collect and analyse data on more than 15,000 high impact and niche markets. Our analysts are trained to combine modern data collection techniques, superior research methodology, expertise and years of collective experience to produce informative and accurate research.

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Regenerative Medicine Market to Witness a Pronounce Growth During 2017 to 2025 – 3rd Watch News

May 31st, 2020 3:48 pm

Regenerative Medicine Market: Snapshot

Regenerative medicine is a part of translational research in the fields of molecular biology and tissue engineering. This type of medicine involves replacing and regenerating human cells, organs, and tissues with the help of specific processes. Doing this may involve a partial or complete reengineering of human cells so that they start to function normally.

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Regenerative medicine also involves the attempts to grow tissues and organs in a laboratory environment, wherein they can be put in a body that cannot heal a particular part. Such implants are mainly preferred to be derived from the patients own tissues and cells, particularly stem cells. Looking at the promising nature of stem cells to heal and regenerative various parts of the body, this field is certainly expected to see a bright future. Doing this can help avoid opting for organ donation, thus saving costs. Some healthcare centers might showcase a shortage of organ donations, and this is where tissues regenerated using patients own cells are highly helpful.

There are several source materials from which regeneration can be facilitated. Extracellular matrix materials are commonly used source substances all over the globe. They are mainly used for reconstructive surgery, chronic wound healing, and orthopedic surgeries. In recent times, these materials have also been used in heart surgeries, specifically aimed at repairing damaged portions.

Cells derived from the umbilical cord also have the potential to be used as source material for bringing about regeneration in a patient. A vast research has also been conducted in this context. Treatment of diabetes, organ failure, and other chronic diseases is highly possible by using cord blood cells. Apart from these cells, Whartons jelly and cord lining have also been shortlisted as possible sources for mesenchymal stem cells. Extensive research has conducted to study how these cells can be used to treat lung diseases, lung injury, leukemia, liver diseases, diabetes, and immunity-based disorders, among others.

Global Regenerative Medicine Market: Overview

The global market for regenerative medicine market is expected to grow at a significant pace throughout the forecast period. The rising preference of patients for personalized medicines and the advancements in technology are estimated to accelerate the growth of the global regenerative medicine market in the next few years. As a result, this market is likely to witness a healthy growth and attract a large number of players in the next few years. The development of novel regenerative medicine is estimated to benefit the key players and supplement the markets growth in the near future.

Global Regenerative Medicine Market: Key Trends

The rising prevalence of chronic diseases and the rising focus on cell therapy products are the key factors that are estimated to fuel the growth of the global regenerative medicine market in the next few years. In addition, the increasing funding by government bodies and development of new and innovative products are anticipated to supplement the growth of the overall market in the next few years.

On the flip side, the ethical challenges in the stem cell research are likely to restrict the growth of the global regenerative medicine market throughout the forecast period. In addition, the stringent regulatory rules and regulations are predicted to impact the approvals of new products, thus hampering the growth of the overall market in the near future.

Global Regenerative Medicine Market: Market Potential

The growing demand for organ transplantation across the globe is anticipated to boost the demand for regenerative medicines in the next few years. In addition, the rapid growth in the geriatric population and the significant rise in the global healthcare expenditure is predicted to encourage the growth of the market. The presence of a strong pipeline is likely to contribute towards the markets growth in the near future.

Global Regenerative Medicine Market: Regional Outlook

In the past few years, North America led the global regenerative medicine market and is likely to remain in the topmost position throughout the forecast period. This region is expected to account for a massive share of the global market, owing to the rising prevalence of cancer, cardiac diseases, and autoimmunity. In addition, the rising demand for regenerative medicines from the U.S. and the rising government funding are some of the other key aspects that are likely to fuel the growth of the North America market in the near future.

Furthermore, Asia Pacific is expected to register a substantial growth rate in the next few years. The high growth of this region can be attributed to the availability of funding for research and the development of research centers. In addition, the increasing contribution from India, China, and Japan is likely to supplement the growth of the market in the near future.

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Global Regenerative Medicine Market: Competitive Analysis

The global market for regenerative medicines is extremely fragmented and competitive in nature, thanks to the presence of a large number of players operating in it. In order to gain a competitive edge in the global market, the key players in the market are focusing on technological developments and research and development activities. In addition, the rising number of mergers and acquisitions and collaborations is likely to benefit the prominent players in the market and encourage the overall growth in the next few years.

Some of the key players operating in the regenerative medicine market across the globe areVericel Corporation, Japan Tissue Engineering Co., Ltd., Stryker Corporation, Acelity L.P. Inc. (KCI Licensing), Organogenesis Inc., Medtronic PLC, Cook Biotech Incorporated, Osiris Therapeutics, Inc., Integra Lifesciences Corporation, and Nuvasive, Inc.A large number of players are anticipated to enter the global market throughout the forecast period.

About TMR Research:

TMR Research is a premier provider of customized market research and consulting services to business entities keen on succeeding in todays supercharged economic climate. Armed with an experienced, dedicated, and dynamic team of analysts, we are redefining the way our clients conduct business by providing them with authoritative and trusted research studies in tune with the latest methodologies and market trends.

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Regenerative Medicine Market 2020 Size, Share, Regional Growth, Trends, Methods, Applications, Equipment vendors, Business Prospects and Forecast to…

May 31st, 2020 3:48 pm

Global Regenerative Medicine market offers a detailed overview of the regional as well as local market. With the objective to offer a complete market overview the Regenerative Medicine market report includes regional competitive landscape for the number of major market service providers. Moreover, the Regenerative Medicine market report also provides a comprehensive analysis of the major market players in the regional and global regions. The Regenerative Medicine market report provides an in-depth analysis of the market growth aspects, opportunities, status, size in terms of value and volume, and market segmentation along with the market revenue. In addition, the report also studies market outlook and status of the global and major regions on the basis of product, application, and key market players.

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Additionally, the research report on Regenerative Medicine market provides a broad analysis of the market which includes market overview, production, producers, dimensions, price, value, growth rate, income, deals, export, consumption, and sales revenue of the global Regenerative Medicine market. On the other hand, the Regenerative Medicine market report also studies the market status for the forecast period.

However, this will help to increase the marketing opportunities across the world as well as major market providers. The global Regenerative Medicine market report also offers in depth coverage from the huge range of aspects as well as scenario to opportunities and future trends. The global Regenerative Medicine market report also contains the manufacturers data which may comprise price, shipment, revenue, interview record, gross profit, and business distribution which help the customers to know about the global Regenerative Medicine market competitive landscape better.

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The Regenerative Medicine market research report also covers the extensive SWOT analysis, venture return investigation, and speculation attainability investigation. The Regenerative Medicine market report further describes a complete market dynamic such as opportunities, market drivers, as well as challenges prevalent in the global market to better understand the Regenerative Medicine market more deeply. In addition to this, the Regenerative Medicine market report also offers qualitative as well as qualitative analysis of very segment along with its revenues and investment details in the market. The Regenerative Medicine market research report also describes the leading continents as well as their major countries with the profiles of major players operating across the global market.

In addition to this, the Regenerative Medicine market report also provides helpful insights for every established and innovative players across the globe. Furthermore the Regenerative Medicine market report offers accurate analysis for the shifting competitive dynamics. This research report comprises a complete analysis of future growth in terms of the evaluation of the mentioned forecast period. The Regenerative Medicine market report offers a comprehensive study of the technological growth outlook over time to know the market growth rates. The Regenerative Medicine market report also includes progressive analysis of the huge number of different factors that are boosting or operating as well as regulating the Regenerative Medicine market growth.

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Meat the Future: Film Review – Variety

May 31st, 2020 3:48 pm

Meat the Future is a slightly goofy title for a film that takes its subject very, very seriously. The wordplay feels like a token flourish of whimsy in Liz Marshalls quietly educational documentary about the rise of alternative, environmentally friendly but still animal-based meat, as if to gently beckon carnivorous viewers who might be expecting a dour lecture. That isnt on the cards here, however. Meat the Future unfolds as a thorough and persuasive presentation for a cutting-edge product that it wants us to start thinking about in normalized terms; its got too much to explain and advocate to leave much time for moral repudiation. Clean meat, as cell-grown protein has been branded by the scientists developing it, is the future; Marshalls doc treats the present as a formality to be politely put behind us.

Selected to premiere as a special presentation at Hot Docs and currently streaming as part of the Toronto-based festivals online edition this smoothly assembled, information-led doc should transfer easily to television slots and VOD platforms, where itll connect with general audiences who may have encountered the subject of slaughter-free meat via buzzword-heavy magazine articles, but havent got into the chewier details. It gives us an amiable, reassuring guide in the form of Dr. Uma Valeti, an Indian-born cardiologist turned CEO of trailblazing clean meat startup Memphis Meats, who is quick to clarify what his passion product is not: Its not, he insists, lab-grown, cloned, in vitro, or any of the more daunting, clinical terms thrown around by advocates of more traditional butchery.

What it is is at once elegantly simple and kind of mind-blowing: at the edge of human knowledge, one Memphis Meats scientist claims, in a rare moment of hyperbolic extravagance. With equivalent tissue-engineering techniques to those used in regenerative medicine, scientists effectively cultivate flesh from the cells of living animals, resulting in a product allegedly closer in taste and texture to traditional meat than any plant-based alternative which is hardly surprising given the biological roots of it all, except that this technology results in no animal death or waste. Marshall doesnt glide through these nitty-gritties as if dispensing with the the science part in a shampoo commercial: Rather, the better part of the film is given over to Valeti and his colleagues repeated explanations and illustrations of how the sausage, so to speak, is made.

This may not be the stuff of exhilarating cinema, but neither is it dull. Meat the Future is a substance-over-style doc that manages the rare trick of being at once dry and rather engrossing: Over 90 minutes, its methodical, explicatory approach affords viewers of various dietary persuasions ample space to consider their own gastronomic preferences, preconceptions and prejudices. Marshall, who established her eco-doc credentials with 2013s crowdpleasing animal-rights study The Ghosts in Our Machine, isnt out to break a rhetorical sweat arguing us into a position: Like the smiling, soft-spoken Dr. Valeti, she provides enough facts and yes, in brief, horrifying footage from vast American factory farms, just enough of an emotional tug for us to argue ourselves there.

A handful of opposing views are introduced via footage from a combined FDA and USDA conference on the future branding of clean meat, prompted by protests from traditional livestock farmers that the miracle product shouldnt legally be permitted to use the m-word at all. Representatives from various American cattlemens associations many of them amusingly attired to type in Stetson hats and fringe jackets say their piece, but the film doesnt work up an argumentative head of steam. Between the cool, pale tones of its camerawork and graphics and the measured, conversational rhythm of its editing, Meat the Future aims for the same air of high-road calm as the burgeoning industry it depicts.

Still, one does wish for a slightly wider, more colorful range of perspectives here. Were treated to the impressed responses of various scientists and journalists as they chow down on cultivated meatballs, duck cutlets and clean but enticingly greasy fillet of fried chicken but the film misses a trick by not getting any restaurateurs or food personalities to weigh in on its merits. Where clean meat fits into a world increasingly drawn toward plant-based cuisine, meanwhile, is another intriguing avenue that goes unexplored: Surely the thoughts of an expert vegan advocate or two would further test and enrich the films compelling case for kinder carnivorousness.

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Coronavirus business impact: Carbon Fibre Application to Biomaterials Market 10-year Forecast and Trends Analysis Research Report – Jewish Life News

May 31st, 2020 3:48 pm

The report on the Carbon Fibre Application to Biomaterials market provides a birds eye view of the current proceeding within the Carbon Fibre Application to Biomaterials market. Further, the report also takes into account the impact of the novel COVID-19 pandemic on the Carbon Fibre Application to Biomaterials market and offers a clear assessment of the projected market fluctuations during the forecast period. The different factors that are likely to impact the overall dynamics of the Carbon Fibre Application to Biomaterials market over the forecast period (2019-2029) including the current trends, growth opportunities, restraining factors, and more are discussed in detail in the market study.

As per the presented market report, the global Carbon Fibre Application to Biomaterials market is projected to attain a CAGR growth of ~XX% during the assessment period and surpass a value of ~US$XX by the end of 20XX. Further, the report suggests that the growth of the Carbon Fibre Application to Biomaterials market hinges its hope on a range of factors including, emphasis on innovation by market players, surge in the investments pertaining to R&D activities, and favorable regulatory policies among others.

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Competition Landscape

The report provides critical insights related to the business operations of prominent companies operating in the Carbon Fibre Application to Biomaterials market. The revenue generated, market presence of different companies, product range, and the financials of each company is included in the report.

Regional Landscape

The regional landscape section of the report provides resourceful insights related to the scenario of the Carbon Fibre Application to Biomaterials market in the key regions. Further, the market attractiveness of each region provides players a clear understanding of the overall growth potential of the Carbon Fibre Application to Biomaterials market in each region.

End-User Analysis

The report provides a detailed analysis of the various end-users of the Carbon Fibre Application to Biomaterials along with the market share, size, and revenue generated by each end-user.

The following manufacturers are covered:ACS MaterialeSpin TechnologiesGrupo AntolinLitmus NanotechnologyCarbon Nanomaterial TechnologyGraphenanoNanographite MatericalsPyrograpg ProsuctsAIXTRONPyrograf ProductsApplied SciencesEMFUTUR Technologies

Segment by RegionsNorth AmericaEuropeChinaJapan

Segment by TypeCarbon NanofibersOther

Segment by ApplicationRegenerative MedicineCancer TreatmentOther

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Regenerative Medicine Market – Rising focus on cell therapy products drive the market growth – BioSpace

May 31st, 2020 3:47 pm

Regenerative medicine is a part of translational research in the fields of molecular biology and tissue engineering. This type of medicine involves replacing and regenerating human cells, organs, and tissues with the help of specific processes. Doing this may involve a partial or complete reengineering of human cells so that they start to function normally.

Regenerative medicine also involves the attempts to grow tissues and organs in a laboratory environment, wherein they can be put in a body that cannot heal a particular part. Such implants are mainly preferred to be derived from the patients own tissues and cells, particularly stem cells. Looking at the promising nature of stem cells to heal and regenerative various parts of the body, this field is certainly expected to see a bright future. Doing this can help avoid opting for organ donation, thus saving costs. Some healthcare centers might showcase a shortage of organ donations, and this is where tissues regenerated using patients own cells are highly helpful.

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There are several source materials from which regeneration can be facilitated. Extracellular matrix materials are commonly used source substances all over the globe. They are mainly used for reconstructive surgery, chronic wound healing, and orthopedic surgeries. In recent times, these materials have also been used in heart surgeries, specifically aimed at repairing damaged portions.

Cells derived from the umbilical cord also have the potential to be used as source material for bringing about regeneration in a patient. A vast research has also been conducted in this context. Treatment of diabetes, organ failure, and other chronic diseases is highly possible by using cord blood cells. Apart from these cells, Whartons jelly and cord lining have also been shortlisted as possible sources for mesenchymal stem cells. Extensive research has conducted to study how these cells can be used to treat lung diseases, lung injury, leukemia, liver diseases, diabetes, and immunity-based disorders, among others.

Global Regenerative Medicine Market: Overview

The global market for regenerative medicine market is expected to grow at a significant pace throughout the forecast period. The rising preference of patients for personalized medicines and the advancements in technology are estimated to accelerate the growth of the global regenerative medicine market in the next few years. As a result, this market is likely to witness a healthy growth and attract a large number of players in the next few years. The development of novel regenerative medicine is estimated to benefit the key players and supplement the markets growth in the near future.

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Global Regenerative Medicine Market: Key Trends

The rising prevalence of chronic diseases and the rising focus on cell therapy products are the key factors that are estimated to fuel the growth of the global regenerative medicine market in the next few years. In addition, the increasing funding by government bodies and development of new and innovative products are anticipated to supplement the growth of the overall market in the next few years.

On the flip side, the ethical challenges in the stem cell research are likely to restrict the growth of the global regenerative medicine market throughout the forecast period. In addition, the stringent regulatory rules and regulations are predicted to impact the approvals of new products, thus hampering the growth of the overall market in the near future.

Global Regenerative Medicine Market: Market Potential

The growing demand for organ transplantation across the globe is anticipated to boost the demand for regenerative medicines in the next few years. In addition, the rapid growth in the geriatric population and the significant rise in the global healthcare expenditure is predicted to encourage the growth of the market. The presence of a strong pipeline is likely to contribute towards the markets growth in the near future.

Global Regenerative Medicine Market: Regional Outlook

In the past few years, North America led the global regenerative medicine market and is likely to remain in the topmost position throughout the forecast period. This region is expected to account for a massive share of the global market, owing to the rising prevalence of cancer, cardiac diseases, and autoimmunity. In addition, the rising demand for regenerative medicines from the U.S. and the rising government funding are some of the other key aspects that are likely to fuel the growth of the North America market in the near future.

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Furthermore, Asia Pacific is expected to register a substantial growth rate in the next few years. The high growth of this region can be attributed to the availability of funding for research and the development of research centers. In addition, the increasing contribution from India, China, and Japan is likely to supplement the growth of the market in the near future.

Global Regenerative Medicine Market: Competitive Analysis

The global market for regenerative medicines is extremely fragmented and competitive in nature, thanks to the presence of a large number of players operating in it. In order to gain a competitive edge in the global market, the key players in the market are focusing on technological developments and research and development activities. In addition, the rising number of mergers and acquisitions and collaborations is likely to benefit the prominent players in the market and encourage the overall growth in the next few years.

Some of the key players operating in the regenerative medicine market across the globe are Vericel Corporation, Japan Tissue Engineering Co., Ltd., Stryker Corporation, Acelity L.P. Inc. (KCI Licensing), Organogenesis Inc., Medtronic PLC, Cook Biotech Incorporated, Osiris Therapeutics, Inc., Integra Lifesciences Corporation, and Nuvasive, Inc. A large number of players are anticipated to enter the global market throughout the forecast period.

About TMR Research

TMR Research is a premier provider of customized market research and consulting services to business entities keen on succeeding in todays supercharged economic climate. Armed with an experienced, dedicated, and dynamic team of analysts, we are redefining the way our clients conduct business by providing them with authoritative and trusted research studies in tune with the latest methodologies and market trends.

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Impact of Covid-19 on Agricultural Biotechnology Market Outlook, Revenue, Trends and Forecasts Research Report 2020-2028 – Azizsalon News

May 31st, 2020 3:46 pm

Agricultural Biotechnology Market is analyzed with industry experts in mind to maximize return on investment by providing clear information needed for informed business decisions. This research will help both established and new entrants to identify and analyze market needs, market size and competition. It explains the supply and demand situation, the competitive scenario, and the challenges for market growth, market opportunities and the threats faced by key players.

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A 360 degree outline of the competitive scenario of the Global Agricultural BiotechnologyMarket is presented by QuinceMarketInsights. It has a massive data allied to the recent product and technological developments in the markets.

It has a wide-ranging analysis of the impact of these advancements on the markets future growth, wide-ranging analysis of these extensions on the markets future growth. The research report studies the market in a detailed manner by explaining the key facets of the market that are foreseeable to have a countable stimulus on its developing extrapolations over the forecast period.

Key players: KWS SAAT SE & Co. KGaA, ChemChina, Limagrain, Nufarm, Marrone Bio Innovations, Performance Plants Inc., Corteva, ADAMA Ltd, MITSUI & CO., LTD, Evogene Ltd., Valent BioSciences LLC, and Bayer AG.

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By Application (Vaccine, Flower Culturing, Biofuels)

By Organism (Plants, Animals, Microbes)

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A detailed outline of the Global Agricultural BiotechnologyMarket includes a comprehensive analysis of different verticals of businesses. North America, Europe, Asia Pacific, Middle East & Africa, and South America have been considered for the studies on the basis of several terminologies.

This is anticipated to drive the Global Agricultural BiotechnologyMarket over the forecast period. This research report covers the market landscape and its progress prospects in the near future. After studying key companies, the report focuses on the new entrants contributing to the growth of the market. Most companies in the Global Agricultural BiotechnologyMarket are currently adopting new technological trends in the market.

Finally, the researchers throw light on different ways to discover the strengths, weaknesses, opportunities, and threats affecting the growth of the Global Agricultural BiotechnologyMarket. The feasibility of the new report is also measured in this research report.

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UNITY Biotechnology to Participate in the Goldman Sachs 41st Annual Global Healthcare Conference – GlobeNewswire

May 31st, 2020 3:46 pm

SAN FRANCISCO, May 28, 2020 (GLOBE NEWSWIRE) -- UNITY Biotechnology (UNITY) [NASDAQ:UBX], a biotechnology company developing therapeutics to extend healthspan by slowing, halting or reversing diseases of aging, today announced that members of its senior management team will participate in the upcoming Goldman Sachs 41st Annual Global Healthcare Conference.

Goldman Sachs 41st Annual Global Healthcare Conference

Date: June 11, 2020Fireside Chat Time: 3:50 PM E.T. Location: Virtual

A live audio webcast of the fireside chat will be available through the Investors & Media section of UNITYs website. An archived replay will be available for 90 days following the event.

About UNITYUNITY is developing therapeutics to extend healthspan with an initial focus on cellular senescence. UNITY believes that the accumulation of senescent cells is a fundamental mechanism of aging and a driver of many common age-related diseases. Cellular senescence is a natural biological state in which a cell permanently halts division. As senescent cells accumulate with age, they begin secreting inflammatory factors, proteases, fibrotic factors, and growth factors, that disturb the tissue micro-environment. This collection of secreted proteins is referred to as the Senescence Associated Secretory Phenotype, or SASP. UNITY is developing senolytic medicines to eliminate senescent cells and thereby stop the production of the SASP, which UNITY believes addresses a root cause of age-related diseases. By stopping the production of the SASP at it source, UNITY believes senolytic medicines could slow, halt, or reverse diseases such as osteoarthritis and age-related eye diseases. More information is available atwww.unitybiotechnology.comor follow us onTwitter.

Investors Endurance AdvisorsMike Zanonimzanoni@enduranceadvisors.com

Media Canale CommunicationsJason Sparkjason@canalecomm.com

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Food Biotechnology Market Overview By Growing Demands, Trends And Business Opportunities 2020 To 2027 – Cole of Duty

May 31st, 2020 3:46 pm

Trusted Business Insights answers what are the scenarios for growth and recovery and whether there will be any lasting structural impact from the unfolding crisis for the Food Biotechnology market.

Trusted Business Insights presents an updated and Latest Study on Food Biotechnology Market 2019-2026. The report contains market predictions related to market size, revenue, production, CAGR, Consumption, gross margin, price, and other substantial factors. While emphasizing the key driving and restraining forces for this market, the report also offers a complete study of the future trends and developments of the market.The report further elaborates on the micro and macroeconomic aspects including the socio-political landscape that is anticipated to shape the demand of the Food Biotechnology market during the forecast period (2019-2029).It also examines the role of the leading market players involved in the industry including their corporate overview, financial summary, and SWOT analysis.

Get Sample Copy of this Report @ Food Biotechnology Market Research Report Forecast to 2029 (Includes Business Impact of COVID-19)

Abstract, Snapshot, Market Analysis & Market Definition: Food Biotechnology MarketIndustry / Sector Trends

Global Food Biotechnology Market size was valued at over USD 23 billion in 2018 and is anticipated to witness over 10% CAGR up to 2025.

Increasing penetration of advanced technologies to develop new products by modifying plants, animals, and microorganisms genes to provide innovative solutions is driving the market growth. Shifting trends towards healthy lifestyles accompanied by a rise in processed food demand has urged the F&B manufacturers to improve the nutritional content in their products, thereby generating new growth opportunities for the biotech-based industry players. Further, there is a requirement to enhance the shelf life and taste of food by the use of encapsulation techniques and other ingredients.

Strong growth in functional food & beverages and dietary supplements industry is resulting in increased competitiveness, thus propelling the food biotechnology market revenue. As per CCI, the global nutraceutical market including functional F&B and dietary supplements is projected to reach USD 241 billion in 2019, observing around 7% CAGR from 2014 to 2019. Factors such as robust expansion of food industry and low-cost biotech services particular in developing countries has escalated the adoption of services.

Stringent government regulations to enhance product quality and transparency are among the foremost aspects attributing to food biotech solutions. Also, modifications in labeling regulations asking for a declaration of GMOs, allergens, and nutritional content is surging the industry share. Further, consumer-driven movements such as clean label has urged food manufacturers to improve the quality by using natural ingredients instead of artificial constituents.

Changes in climatic conditions over the years has resulted in increased production of genetically modified (GM) crops or ingredients through the use of biotech services. This provides plants with improved resistance to diseases, insecticides, and herbicides, as well as extending the shelf life of the produce. However, growth in the organic food industry can hamper the demand for GM crops, thus affecting the food biotechnology industry share.

Market Segmentation, Outlook & Regional Insights: Food Biotechnology Market

Food Biotechnology Market, By Type

Transgenic segment dominates the global market accounting for over 75% share in 2018. Increasing demand for genetically modified crops to enhance productivity in low producing or harsh climatic conditions will drive segment growth. According to ISAAA, the global utilized area for biotech crops increased from 148 million hectares in 2010 to 190 million hectares in 2017. Countries including the U.S., Brazil, Argentina, Canada, and India holds over 90% of the total area under GM crop cultivation. Farmers shifting from conventional seeds to bio-seeds to improve their profit margins will escalate the market growth.

Germany Food Biotechnology Market Size, By Type, 2018 (USD Million)

Food Biotechnology Market, By Application

Global food biotechnology market through animal segment holds over 34% share in 2018. Increasing necessity to enhance milk production in dairy cattle with growing demand will propel industry expansion. Robust growth in meat consumption such as processed meat accompanied by increasing consumer awareness on nutritional benefits will drive the biotech applications. As per FAO, global meat production is projected to increase, reach around 48MT by 2025. Further, testing services for developing products to suit the human dietary requirements will drive market development.

Global food biotechnology market through plants is projected to account for over USD 22 billion in 2025. The key growth factors include an increase in the development of GM crops with pesticide resistance and abiotic stress tolerance to increase the yield. Reduction in the arable land area will further shift the preference towards biotechnological products. Enhanced focus on innovation of new food ingredients will surge the business revenues. Strong application outlook of biotech solutions to produce high-quality crops and reduce the health risk will augment business expansion.

Food Biotechnology Market, By Region

North America market is anticipated to cross USD 12 billion by 2025. High investments on technological advancements coupled with high consumer spending on nutritious products will augment the industry share. The U.S. is the largest producer of genetically modified crops with 75 million hectares area for biotech crops. Further, the presence of large multinational corporations, increasing private and government R&D investments, supported by favourable government policies will fuel the market growth. Further, positive application outlook of genetically modified yeast in developing new alcoholic beverages will support regional growth.

Asia Pacific Food Biotechnology Market, By Country, 2018 & 2025, (USD Million)

Asia Pacific food biotechnology market is projected to witness over 11% CAGR from 2019 to 2025. Countries including China, India, and Japan together dominate the regional market share. The demand for dietary supplements is increasing due to a shifting trend towards healthy lifestyles, thus increasing the demand for nutritional ingredients. Also, product innovations supported by the rise in per capita income will drive the biotech solutions on health foods. Further, the necessity to augment the agricultural output owing to the rise in population, along with severe climatic variations will drive the biotechnology industry share.

Key Players, Recent Developments & Sector Viewpoints: Food Biotechnology Market

Global market is competitive due to the presence of large multinationals and regional players. Key industry participants in market include BASF SE, Bayer CropScience AG, AquaBounty Technologies, ABS Global, Dow AgroSciences LLC, Arcadia Biosciences, Camson Bio Technologies Ltd, BDF Ingredients Zuchem, and Monsanto. Product development, geographic expansion, mergers, acquisitions, and collaborations are among the key strategies observed in the industry. For instance, in 2017, Bayer and Ginkgo Bioworks announced to launch a company to developing new technologies for engineering the plant microbiome.

Industry Viewpoint

Food biotechnology market is driven by the requirement for improving the productivity and quality of the edible items by altering genes. Growth in the food & beverages industry, increasing population, rising disposable incomes, and health awareness are among the major factors creating a long-term positive impact. Biotechnological product innovations among food manufacturers will provide lucrative opportunities for business growth. North America and Europe are among the early adopters of biotech services, however developing regions are also expected to implement advanced solutions in food industry. The penetration rate is high in Asia Pacific owing to strong R&D investments and the necessity for increasing the food productivity and animal milk output

Key Insights Covered: Exhaustive Food Biotechnology Market1. Market size (sales, revenue and growth rate) of Food Biotechnology industry.2. Global major manufacturers operating situation (sales, revenue, growth rate and gross margin) of Food Biotechnology industry.3. SWOT analysis, New Project Investment Feasibility Analysis, Upstream raw materials and manufacturing equipment & Industry chain analysis of Food Biotechnology industry.4. Market size (sales, revenue) forecast by regions and countries from 2019 to 2025 of Food Biotechnology industry.

Research Methodology: Food Biotechnology Market

Quick Read Table of Contents of this Report @ Food Biotechnology Market Research Report Forecast to 2029 (Includes Business Impact of COVID-19)

Trusted Business InsightsShelly ArnoldMedia & Marketing ExecutiveEmail Me For Any ClarificationsConnect on LinkedInClick to follow Trusted Business Insights LinkedIn for Market Data and Updates.US: +1 646 568 9797UK: +44 330 808 0580

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Impact of Covid-19 Outbreak on Nanoparticles in Biotechnology and Pharmaceuticals Market 2020 Trends, Growth Opportunities, Demand, Application, Top…

May 31st, 2020 3:46 pm

A report, added to the extensive database of verified Market Research titled Nanoparticles in Biotechnology and Pharmaceuticals Market 2020 by Manufacturer, Region, Type and Application, Forecast up to 2026, is intended to highlight first-hand documentation of all the best implementations in the industry. The report contains an in-depth analysis of current and future market trends, segmentation, industrial opportunities and the future market scenario, taking into account the forecast years 2020 to 2026. It contains extremely important details on the key players in the Nanoparticles in Biotechnology and Pharmaceuticals market as well as growth-oriented practices, that they normally use. The report examines a number of growth drivers and limiting factors. The key forecast information by region, type and application with sales and revenue from 2020 to 2026 is included in this report.

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Top 10 Companies in the Nanoparticles in Biotechnology and Pharmaceuticals Market Research Report:

Competitive landscape:

The report examines the major players, including the profiles of the major players in the market with a significant global and / or regional presence, combined with their information such as related companies, downstream buyers, upstream suppliers, market position, historical background and top competitors based on the Sales with sales contact information.

Regional Description:

The Nanoparticles in Biotechnology and Pharmaceuticals market was analyzed and a proper survey of the market was carried out based on all regions of the world. The regions listed in the report include: North America (United States, Canada, and Mexico), Europe (Germany, France, United Kingdom, Russia, and Italy), Asia-Pacific (China, Japan, Korea, India, and Southeast Asia), South America (Brazil, Argentina , Colombia etc.), Middle East and Africa (Saudi Arabia, United Arab Emirates, Egypt, Nigeria and South Africa). All these regions have been studied in detail and the prevailing trends and different possibilities are also mentioned in the market report.

Sales and sales broken down by application:

Sales and sales divided by type:

In addition, the report categorizes product type and end uses as dynamic market segments that directly impact the growth potential and roadmap of the target market. The report highlights the core developments that are common to all regional hubs and their subsequent impact on the holistic growth path of the Nanoparticles in Biotechnology and Pharmaceuticals market worldwide. Other valuable aspects of the report are the market development history, various marketing channels, supplier analysis, potential buyers and the analysis of the markets industrial chain.

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Table of Content

1 Introduction of Nanoparticles in Biotechnology and Pharmaceuticals Market

1.1 Overview of the Market1.2 Scope of Report1.3 Assumptions

2 Executive Summary

3 Research Methodology of Verified Market Research

3.1 Data Mining3.2 Validation3.3 Primary Interviews3.4 List of Data Sources

4 Nanoparticles in Biotechnology and Pharmaceuticals Market Outlook

4.1 Overview4.2 Market Dynamics4.2.1 Drivers4.2.2 Restraints4.2.3 Opportunities4.3 Porters Five Force Model4.4 Value Chain Analysis

5 Nanoparticles in Biotechnology and Pharmaceuticals Market, By Deployment Model

5.1 Overview

6 Nanoparticles in Biotechnology and Pharmaceuticals Market, By Solution

6.1 Overview

7 Nanoparticles in Biotechnology and Pharmaceuticals Market, By Vertical

7.1 Overview

8 Nanoparticles in Biotechnology and Pharmaceuticals Market, By Geography

8.1 Overview8.2 North America8.2.1 U.S.8.2.2 Canada8.2.3 Mexico8.3 Europe8.3.1 Germany8.3.2 U.K.8.3.3 France8.3.4 Rest of Europe8.4 Asia Pacific8.4.1 China8.4.2 Japan8.4.3 India8.4.4 Rest of Asia Pacific8.5 Rest of the World8.5.1 Latin America8.5.2 Middle East

9 Nanoparticles in Biotechnology and Pharmaceuticals Market Competitive Landscape

9.1 Overview9.2 Company Market Ranking9.3 Key Development Strategies

10 Company Profiles

10.1.1 Overview10.1.2 Financial Performance10.1.3 Product Outlook10.1.4 Key Developments

11 Appendix

11.1 Related Research

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Verified Market Research is a leading Global Research and Consulting firm servicing over 5000+ customers. Verified Market Research provides advanced analytical research solutions while offering information enriched research studies. We offer insight into strategic and growth analyses, Data necessary to achieve corporate goals and critical revenue decisions.

Our 250 Analysts and SMEs offer a high level of expertise in data collection and governance use industrial techniques to collect and analyse data on more than 15,000 high impact and niche markets. Our analysts are trained to combine modern data collection techniques, superior research methodology, expertise and years of collective experience to produce informative and accurate research.

We study 14+ categories from Semiconductor & Electronics, Chemicals, Advanced Materials, Aerospace & Defence, Energy & Power, Healthcare, Pharmaceuticals, Automotive & Transportation, Information & Communication Technology, Software & Services, Information Security, Mining, Minerals & Metals, Building & construction, Agriculture industry and Medical Devices from over 100 countries.

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Impact of Covid-19 Outbreak on Nanoparticles in Biotechnology and Pharmaceuticals Market 2020 Trends, Growth Opportunities, Demand, Application, Top...

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A Rapid Response Regulatory enabling mechanism facilitated by Department of Biotechnology for COVID 19 – India Education Diary

May 31st, 2020 3:46 pm

New Delhi: The Department of Biotechnology has taken several proactive measures to streamline the biosafety regulation and to facilitate researchers and industries which are undertaking research and development in Recombinant DNA Technology and Hazardous Microorganisms.

1. Operationalization of Indian Biosafety Knowledge Portal. The Indian Knowledge Biosafety Portal launched in May, 2019 was made fully operationalized and now the Department is receiving all new applications through online portal only. This has made the whole process transparent and time bound.

2. Notification of Revised Simplified Guidelines on Import, Export and Exchange of GE Organisms and Product Thereof for R&D Purpose: The Department issued the Revised Guidelines in January, 2020 in which Institutional Biosafety Committee have been delegated authority to take decisions on applications of import export and exchange of GE organisms and product thereof for R&D purpose for RG1 and RG2 items.

3. Facilitation of Research and Development on COVID-19: Considering the emerging situations of spread of Coronavirus and with the understanding on requirement of rapid research and development for COVI-19, the Department has proactively taken several steps to facilitate researchers and industries involved in research on COVID19. DBT has issued following guidelines, orders and checklist on COVID 19:

Rapid Response Regulatory Framework for COVID-19 to deal with application for development of vaccines, diagnostics, prophylactics and therapeutics has been notified on 20.03.2020DBT notified Interim Guidance Document on Laboratory Biosafety to Handle COVID-19 Specimens on 08.04.2020.IBSCs are allowed to conduct their meeting through video conferencing up to 30thJune, 2020.Rapid response regulatory framework for development of recombinant DNA COVID 19 vaccine was issued on 26.05.2020.

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A Rapid Response Regulatory enabling mechanism facilitated by Department of Biotechnology for COVID 19 - India Education Diary

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COVID-19: Responding to the business impacts of Pharmaceutical & Biotechnology Environmental Monitoring Market Trends and Segments 2019-2027 …

May 31st, 2020 3:46 pm

A recent market study on the global Pharmaceutical & Biotechnology Environmental Monitoring market reveals that the global Pharmaceutical & Biotechnology Environmental Monitoring market is expected to reach a value of ~US$ XX by the end of 2029 growing at a CAGR of ~XX% during the forecast period (2019-2029).

The Pharmaceutical & Biotechnology Environmental Monitoring market study includes a thorough analysis of the overall competitive landscape and the company profiles of leading market players involved in the global Pharmaceutical & Biotechnology Environmental Monitoring market. Further, the presented study offers accurate insights pertaining to the different segments of the global Pharmaceutical & Biotechnology Environmental Monitoring market such as the market share, value, revenue, and how each segment is expected to fair post the COVID-19 pandemic.

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The following doubts are addressed in the market report:

Key Highlights of the Pharmaceutical & Biotechnology Environmental Monitoring Market Report

The presented report segregates the Pharmaceutical & Biotechnology Environmental Monitoring market into different segments to ensure the readers gain a complete understanding of the different aspects of the Pharmaceutical & Biotechnology Environmental Monitoring market.

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Segmentation of the Pharmaceutical & Biotechnology Environmental Monitoring market

Competitive Outlook

This section of the report throws light on the recent mergers, collaborations, partnerships, and research and development activities within the Pharmaceutical & Biotechnology Environmental Monitoring market on a global scale. Further, a detailed assessment of the pricing, marketing, and product development strategies adopted by leading market players is included in the Pharmaceutical & Biotechnology Environmental Monitoring market report.

Competition AnalysisIn the competitive analysis section of the report, leading as well as prominent players of the global Pharmaceutical & Biotechnology Environmental Monitoring market are broadly studied on the basis of key factors. The report offers comprehensive analysis and accurate statistics on revenue by the player for the period 2015-2020. It also offers detailed analysis supported by reliable statistics on price and revenue (global level) by player for the period 2015-2020.On the whole, the report proves to be an effective tool that players can use to gain a competitive edge over their competitors and ensure lasting success in the global Pharmaceutical & Biotechnology Environmental Monitoring market. All of the findings, data, and information provided in the report are validated and revalidated with the help of trustworthy sources. The analysts who have authored the report took a unique and industry-best research and analysis approach for an in-depth study of the global Pharmaceutical & Biotechnology Environmental Monitoring market.The following players are covered in this report:Danaher CorporationThermo Fisher ScientificMerck KGaAEurofins SinensisLonzaBiomerieuxVAICosascoRMONIAmphenol Advanced SensorsVaisalaPharmaceutical & Biotechnology Environmental Monitoring Breakdown Data by TypeMonitoring EquipmentMediaSoftwareMicrobiology ServicesPharmaceutical & Biotechnology Environmental Monitoring Breakdown Data by ApplicationPharmaceutical IndustryBiotechnology IndustryAcademic & Research Institutes

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Facilitating Research and Innovation: Establishment of 4 COVID-19 Bio Banks by the Department of Biotechnology – India Education Diary

May 31st, 2020 3:46 pm

New Delhi: For the mitigation of COVID-19 pandemic, R&D efforts are directed at the development of vaccines, diagnostics and therapeutics. The specimens collected from COVID-19 positive subjects can be a valuable resource for the R&D efforts. NITI Aayog has recently issued guidelines for sharing of bio specimens and data for research related to COVID-19. As per the directives of the Cabinet Secretary, the Indian Council of Medical Research (ICMR) has notified 16 bio-repositories for collecting, storing and maintaining clinical samples (oropharyngeal/ nasopharyngeal swabs, broncheoalveolar lavage, sputum, blood, urine and stool) of COVID-19 patients.

The enlistment of 16 Bio Repositories are as follows: ICMR 9, DBT 4 and CSIR 3. The four Bio Repositories under the purview of the Department of Biotechnology are, NCR-Biotech Science Cluster (i) THSTI, Faridabad Clinical samples (ii) RCB Faridabad Viral samples, Institute of Life Sciences, Bhubaneswar, InStem, Bangalore and ILBS, New Delhi .Oropharyngeal / nasopharyngeal swabs, bronchoalveolar lavage, sputum, blood, urine and stool of COVID19 patients will be collected and archived for future use to develop validated diagnostics, therapeutics, vaccines etc.

These designated facilities will develop uniform Standard Operating Procedures (SoPs) for sample collection, transportation, aliquoting, storage, and sharing. The role of bio-banks for COVID-19 samples would be development of a vaccine and treatments; guidance regarding handling, including nasopharyngeal swabs; and conditions under which the higher BSL-3 practices should be followed for example, when working with cultures of the coronavirus specimens. The Department of Biotechnology would be supporting these COVID-19 designated Bio-bank facilities through a well strategized future plan so that novel technological interventions can be developed in due course of time. These designated bio repositories will use the clinical samples for R&D purpose in their respective Institutes.

In addition, they are also authorized to share the samples with academia, industry and commercial entities involved in development of diagnostics, therapeutics, vaccines etc., after scrutinising the purpose of the request and ensuring benefit to the country. Sharing of Biospecimens both Clinical and Viral is going to be key for new technology and product development by our researchers, start-ups and industry, a critical step in our journey towards becoming an Atmanirbhar Bharat.

A Rapid Response Regulatory enabling mechanism facilitated by Department of Biotechnology for COVID 19

The Department of Biotechnology has taken several proactive measures to streamline the biosafety regulation and to facilitate researchers and industries which are undertaking research and development in Recombinant DNA Technology and Hazardous Microorganisms.

1. Operationalization of Indian Biosafety Knowledge Portal. The Indian Knowledge Biosafety Portal launched in May, 2019 was made fully operationalized and now the Department is receiving all new applications through online portal only. This has made the whole process transparent and time bound.

2. Notification of Revised Simplified Guidelines on Import, Export and Exchange of GE Organisms and Product Thereof for R&D Purpose: The Department issued the Revised Guidelines in January, 2020 in which Institutional Biosafety Committee have been delegated authority to take decisions on applications of import export and exchange of GE organisms and product thereof for R&D purpose for RG1 and RG2 items.

3. Facilitation of Research and Development on COVID-19: Considering the emerging situations of spread of Coronavirus and with the understanding on requirement of rapid research and development for COVI-19, the Department has proactively taken several steps to facilitate researchers and industries involved in research on COVID19. DBT has issued following guidelines, orders and checklist on COVID 19:

Rapid Response Regulatory Framework for COVID-19 to deal with application for development of vaccines, diagnostics, prophylactics and therapeutics has been notified on 20.03.2020DBT notified Interim Guidance Document on Laboratory Biosafety to Handle COVID-19 Specimens on 08.04.2020.IBSCs are allowed to conduct their meeting through video conferencing up to 30thJune, 2020.Rapid response regulatory framework for development of recombinant DNA COVID 19 vaccine was issued on 26.05.2020Scaling up of COVID testing centres (Hub and spoke model) inNationalresearch laboratories and Universities

To scale up testing and enhance the reach across the countryCity /Regional clusters have been established in a Hub and Spoke Model to scale-up testing of COVID-19 samples in government institutions across the country. Institutes and Laboratories which have the capacity and expertise for both sample collection, handling/processing (BSL-2 facility) and testing (RT-PCR) serve as the hubs and they involve a number of laboratories which have RT PCR machines and the requisite manpower as their extended Testing facilities.

The Hubs are Government laboratories approved by respective Ministries /Departments (DBT, DST, CSIR, DAE, DRDO, ICAR etc) as per ICMR guidelines. So far 19 City /Regional clusters have been established in Bangalore, Delhi/NCR, Hyderabad, Thiruvananthapuram, Chandigarh/Mohali, Bhubaneshwar, Nagpur, Pune, Mumbai, Lucknow, Chennai, Kolkata, North Eastern Region, Jammu & Kashmir, Ahmedabad, Madhya Pradesh, Rajasthan, Banaras, Palampur and Delhi city.

About 100 institutions have been involved and over 1,60,000 samples tested. Seven DBT Autonomous institutes have been approved as hubs by ICMR and they are performing testing for diagnosis of COVID-19 (RGCB, THSTI, ILS, inStem, NCCS, CDFD, NIBMG).

They are also functioning as hubs in the respective Cities/Regions and coordinating the efforts with a number of other premier Central and State Government institutions. In addition, they are working closely with the respective State Governments in obtaining samples for testing and are reporting every day to ICMR on their testing results. Collectively in about 4 weeks, these clusters have done nearly 1,70,000 tests. These clusters will now be scaled to nearly 50 in next 4 weeks and reach remote corners of the country.

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Regenerative Therapies: Helping Horses Self-Heal The Horse – TheHorse.com

May 31st, 2020 3:45 pm

The art (and existing science) of regenerative medicine in equine practice, and whats to come

Regenerative therapy is an umbrellaterm encompassing any method that encourages the body to self- heal. Because it is drawing onits own properties, healing tissue more closely resembles native tissue than weak, disorganized scar tissue typically seen post-injury.

The goal is to allow restoration of normal function and structure of the injured tissue to allow horses to perform at their previous level, whatever that might be, with a reduced risk of reinjury, says Kyla Ortved, DVM, PhD, Dipl. ACVS, ACVSMR, assistant professor of large animal surgery at the University of Pennsylvanias New Bolton Center, in Kennett Square.

She says the three main components of regenerative medicine that help tissues self-heal include:

A specific therapy may incorporate some or all three of these components, says Ortved.

Due to the regenerative therapy industrys popularity and continued growth, many articles weve published review recent laboratory studies about stem cell production and data on efficacy andsafety (you can find them at TheHorse.com/topics/regenerative-medicine). Here, well review the basics of three regenerative modalities commonly used in equine medicine and when veterinarians and horse owners might consider each.

With this approach the practitioner collects blood from a horse and processes it using a commercial system that concentrates the platelets. When he or she injects that concentrated platelet product back into the horse, granules within the platelets release an array of growth factors that aim to facilitate and modulate the healing process. Specifically, granule-derived growth factors encourage target tissue cells at the injury site to migrate and proliferate, improve extracellular matrix synthesis, and stimulate blood vessel development.

Recently, leukocyte-reduced PRP hasbecome many equine veterinarians PRP product of choice. These preparations contain fewer white blood cells (leukocytes) and, reportedly, inflammatory mediators than normal PRP products do. These mediators break tissues down, effectively counteracting the anabolic (tissue-building) effects of the platelets and their granules.

Veterinarians can easily prepare ACS by collecting a blood sample from the patient, then incubating it with special commercially available glass beads to stimulate interleukin-1 receptor antago- nist protein (IRAP) production. Theythen inject the resultant IRAP-rich serumsample back into the patient at the target location or injury site. This protein blocks the action of interleukin-1, a powerful and damaging pro-inflammatory mediator. Additionally, glass bead incubation stimulates the production of anti-inflammatory mediators and growth factors similar to those found in PRP.

Ortved says its important to remember that all biologics, including PRP and IRAP, contain various concentrations of growth factors and bioactive protein.

Remember, they are made from your horses blood and, therefore, containall of the components in blood, just in varying concentrations, she says.

Regenerative therapies that contain highconcentrations of IRAP include IRAP II, autologous protein solution (APS), and bone marrow aspirate concentrate (BMAC).

In certain tissues, such as adipose (fat) and bone marrow, we can find specific cells that have the ability to self-renew and grow more than 200 types of body cells. Veterinarians can isolate these cells, called stem cells or progenitor cells, and either:

Perhaps more important than theirability to differentiate into other celltypes, stem cells have powerful anti-inflammatoryproperties and play acentral role in coordinating healing in alltypes of tissues through cell-to-cell signaling,Ortved says.

Which of these three modality typeswill provide the most benefit to yourhorse depends on a variety of factors thatyou and your veterinarian will consider.

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