BOSTON Helen Obando, a shy slip of a girl, lay curled in a hospital bed in June waiting for a bag of stem cells from her bone marrow, modified by gene therapy, to start dripping into her chest.
The hope was that the treatment would cure her of sickle cell disease, an inherited blood disorder that can cause excruciating pain, organ damage and early death.
Helen, who at 16 was the youngest person ever to undergo the therapy, was sound asleep for the big moment.
It was a critical moment in medical science.
For more than a half-century, scientists have known the cause of sickle cell disease: A single mutation in a gene turns red blood cells into rigid crescent or sickle shapes instead of soft discs. These misshapen cells get stuck in veins and arteries, blocking the flow of blood that carries life-giving oxygen to the body and causing the diseases horrifying hallmark: episodes of agony that begin in babyhood.
Millions of people globally, a vast majority of them Africans, suffer from sickle cell disease. Researchers have worked for decades on improving treatment and finding a cure, but experts said the effort has been hindered by chronic underfunding, in part because most of the estimated 100,000 people in the United States who have the disease are African American, often poor or of modest means.
The disease also affects people with southern European, Middle Eastern or Asian backgrounds, or those who are Hispanic, like Helen.
This is the story of two quests for a sickle cell cure one by the Obando family and one by a determined scientist at Boston Childrens Hospital, Dr. Stuart Orkin, 73, who has labored against the disease since he was a medical resident in the 1970s.
Like many others affected by sickle cell, the Obando family faced a double whammy: not one but two children with the disease, Helen and her older sister, Haylee Obando. They lived with one hope for a cure, a dangerous and sometimes fatal bone marrow transplant usually reserved for those with a healthy sibling as a match. But then they heard about a potential breakthrough: a complex procedure to flip a genetic switch so the body produces healthy blood.
Scientists have been experimenting with gene therapy for two decades, with mixed success. And it will be years before they know if this new procedure is effective in the long term. But if it is, sickle cell disease could be the first common genetic disorder to be cured by manipulating human DNA.
Four weeks after the infusion of stem cells, Helen was strong enough to be discharged. At home, in Lawrence, Massachusetts, on a sofa with her mother by her side, she put a hand over her eyes and started to sob. She and her family wondered: Would it work? Was her suffering really over?
A Familys Nightmare
Sheila Cintron, 35, and Byron Obando, 40, met when she was in the eighth grade and he was a high school senior. They fell in love. Haylee, their first child, was born in 2001, when Cintron was 17.
When a newborn screening test showed that Haylee had the disease, her father asked, Whats sickle cell?
They soon found out.
As the family gathered for her first birthday party, Haylee started screaming inconsolably. They rushed her to the hospital. It was the first of many pain crises.
Doctors warned the parents that if they had another baby, the odds were 1 in 4 that the child would have sickle cell, too. But they decided to take the chance.
Less than two years later, Helen was born. As bad as Haylees disease was, Helens was much worse. When she was 9 months old, a severe blockage of blood flow in her pelvis destroyed bone. At age 2, her spleen, which helps fight bacterial infections, became dangerously enlarged because of blocked blood flow. Doctors surgically removed the organ.
After Helen was born, her parents decided not to have any more children. But four years later, Cintron discovered she was pregnant again.
But they were lucky. Their third child, Ryan Obando, did not inherit the sickle cell mutation.
As Ryan grew up, Helens health worsened. When he was 9, Helens doctors suggested a drastic solution: If Ryan was a match for her, he might be able to cure her by giving her some of his bone marrow, though there would also be major risks for her, including death from severe infections or serious damage to organs if his immune system attacked her body.
As it turned out, Ryan matched not Helen but Haylee.
The transplant succeeded, but her parents asked themselves how they could stand by while one daughter was cured and the sicker one continued to suffer.
There was only one way to get a sibling donor for Helen: have another baby. In 2017, the couple embarked on another grueling medical journey.
Obando had a vasectomy, so doctors had to surgically extract his sperm from his testicles. Cintron had 75 eggs removed from her ovaries and fertilized with her husbands sperm. The result was more than 30 embryos.
Not a single embryo was both free of the sickle cell gene and a match for Helen.
So the family decided to move to Mesa, Arizona, from Lawrence, where the cold, which set off pain crises, kept Helen indoors all winter. The family had already sold their house when they heard that doctors at Boston Childrens were working on sickle cell gene therapy.
Cintron approached Dr. Erica Esrick, a principal investigator for the trial. But the trial wasnt yet open to children.
Figuring Out the Science
Nothing had prepared Orkin for the suffering he witnessed in his 30s as a medical resident in the pediatric hematology ward at Boston Childrens. It was the 1970s, and the beds were filled with children who had sickle cell crying in pain.
Orkin knew there was a solution to the puzzle of sickle cell, at least in theory: Fetuses make hemoglobin the oxygen-carrying molecules in blood cells with a different gene. Blood cells filled with fetal hemoglobin do not sickle. But the fetal gene is turned off after a baby is born, and an adult hemoglobin gene takes over. If the adult gene is mutated, red cells sickle.
Researchers had to figure out how to switch hemoglobin production to the fetal form. No one knew how to do that.
Orkin needed ideas. Supported by the National Institutes of Health and Howard Hughes Medical Institute, he kept looking.
The breakthrough came in 2008. The cost of gene sequencing was plummeting, and scientists were finding millions of genetic signposts on human DNA, allowing them to home in on small genetic differences among individuals. Researchers started doing large-scale DNA scans of populations, looking for tiny but significant changes in genes. They asked: Was there a molecular switch that flipped cells from making fetal to adult hemoglobin? And if there was, could the switch be flipped back?
They found a promising lead: an unprepossessing gene called BCL11A.
In a lab experiment, researchers blocked this gene and discovered that the blood cells in petri dishes started making fetal instead of adult hemoglobin.
Next they tried blocking the gene in mice genetically engineered to have human hemoglobin and sickle cell disease. Again, it worked.
Patients came next, in the gene therapy trial at Boston Childrens that began in 2018.
The trial run by Dr. David Williams, an expert in the biology of blood-forming stem cells at Boston Childrens, and Esrick has a straightforward goal: Were going to reeducate the blood cells and make them think they are still in the fetus, Williams said.
Doctors gave adult patients a drug that loosened stem cells immature cells that can turn into red blood cells from the bone marrow, their normal home, so they floated free in the bloodstream. Then they extracted those stem cells from whole blood drawn from the patient.
The researchers used a disabled genetically engineered AIDS virus to carry information into the stem cells, flipping on the fetal hemoglobin gene and turning off the adult gene. Then they infused the treated stem cells into patients veins. From there, the treated cells migrated into the patients bone marrow, where they began making healthy blood cells.
With the success in adults, the Food and Drug Administration said Boston Childrens could move on to teenagers.
When her mother told her about the gene therapy trial, Helen was frightened. But the more she thought about it, the more she was ready to take the risk.
In the months after the gene therapy infusion at Boston Childrens, her symptoms disappeared.
Helen was scheduled for her six-month checkup Dec. 16. Helens total hemoglobin level was so high it was nearly normal a level she had never before achieved, even with blood transfusions. She had no signs of sickle cell disease.
More:
At 16, shes a pioneer in the fight to cure sickle cell disease at Boston Childrens - Boston.com
- Gene therapy research offers hope for people with chronic kidney disease - Medical Xpress - January 6th, 2025
- Sangamo Therapeutics to Regain Full Rights to Hemophilia A Gene Therapy Program Following Pfizers Decision to Cease Development of Giroctocogene... - January 6th, 2025
- JCR Pharmaceuticals and Modalis Therapeutics Announce Transition to the Next Phase of Joint Research Agreement for Development of Novel Gene Therapy -... - January 6th, 2025
- Gene therapy targets the retina to treat eye disease - Nature.com - January 6th, 2025
- Sangamos Stock Plummets as Pfizer Axes Hemophilia Gene Therapy Pact - BioSpace - January 6th, 2025
- How Increased Use of Gene Therapy Treatment for Sickle Cell Disease Could Affect the Federal Budget - Congressional Budget Office - January 6th, 2025
- The Future of Regulatory Processes in Cell and Gene Therapy - Pharmaceutical Executive - January 6th, 2025
- CGTLive's 2024 Pillars of Progress: Most-Watched Conference Interviews - CGTLive - January 6th, 2025
- Pfizer cuts losses on near-approval hemophilia gene therapy, adding to troubled Sangamo's woes - Fierce Biotech - January 6th, 2025
- JCR Pharmaceuticals and Modalis Advance Joint Gene Therapy Research - TipRanks - January 6th, 2025
- JCR and Modalis Advance Joint Gene Therapy Research - TipRanks - January 6th, 2025
- Novartis Gene Therapy Shows Promise in Treating SMA - Yahoo Finance - January 6th, 2025
- Gene Therapy Market to Hit Valuation of US$ 42.26 Billion By 2033 | Astute Analytica - Yahoo Finance - January 6th, 2025
- Novartis gene therapy helps children with rare muscle disorder in study - Reuters - January 6th, 2025
- Capricor Puts Rolling BLA for DMD Cardiomyopathy Cell Therapy Deramiocel in Front of the FDA - CGTLive - January 6th, 2025
- Positive data could expand use of Novartis gene therapy for SMA - Yahoo Finance - January 6th, 2025
- Sangamo spirals after Pfizer halts hemophilia A gene therapy partnership - MM+M Online - January 6th, 2025
- Cell Therapy and Gene Therapy CDMO Market to Reach USD 11.11 Billion by 2030 | Discover Growth Trends and Insights | Valuates Reports - PR Newswire - January 6th, 2025
- Struggling With Adoption, Sickle Cell Gene Therapy Manufacturers Embrace CMS Model - News & Insights - January 6th, 2025
- Sangamo Therapeutics to Regain Rights to Gene Therapy Program from Pfizer - Contract Pharma - January 6th, 2025
- Researchers Create Gene Therapy with Potential to Treat Peripheral Pain ... - December 28th, 2024
- How CRISPR Is Changing Cancer Research and Treatment - December 28th, 2024
- Gene Therapy Shows Long-Term Vision Benefits in Rare Eye Disease - December 28th, 2024
- 100 cell and gene therapy leaders to watch in 2025 - December 28th, 2024
- Can a new gene therapy reverse heart failure? - Futurity - December 28th, 2024
- Sustained visual improvements in LHON patients treated with AAV gene therapy - Medical Xpress - December 28th, 2024
- Nebraska Medicine administers novel gene therapy to first hemophilia ... - December 28th, 2024
- Gene Therapy for Cardiomyopathies Presents Promising Alternative to Current Treatment - Managed Healthcare Executive - December 28th, 2024
- Stem Cell Transplantation Still the Main Treatment Option for Beta-Thalassemia - Medpage Today - December 28th, 2024
- Caribou Overhyped Gene-Therapy Testing, Investor Class Suit Says - Bloomberg Law - December 28th, 2024
- WuXi AppTec sells off cell and gene therapy operations in US, UK - FirstWord Pharma - December 28th, 2024
- Top 5 Print Publication Articles of 2024 - Managed Healthcare Executive - December 28th, 2024
- Gene Therapy Shows Long-Term Vision Benefits in Rare Eye Disease - Medpage Today - December 28th, 2024
- UPenn gene therapy pioneers biotech gets $34 million in funding - The Philadelphia Inquirer - December 28th, 2024
- PHC Corporation to present LiCellGrow at Advanced Therapies Week 2025 - Drug Target Review - December 28th, 2024
- The Evolution of Cell & Gene Therapy: Development and Manufacturing Insights and the Role of CDMOs - Pharmaceutical Technology Magazine - December 28th, 2024
- Pig kidney transplants, new schizophrenia drug: Here are 5 of the biggest medical breakthroughs in 2024 - ABC News - December 28th, 2024
- Cell Therapy Manufacturing Trends And Advancements Continuing In 2025 - BioProcess Online - December 28th, 2024
- Can Gene Therapy Treat Chronic Pain? - LabRoots - December 28th, 2024
- Driving innovation: India's foray into gene and cell therapies - The Economic Times - December 28th, 2024
- Governor Hochul Celebrates the Opening Of New York's First Cell and Gene Therapy Hub at Roswell Park Comprehensive Cancer Center in Buffalo - PR Web - December 19th, 2024
- GenSight Biologics Provides Update on Regulatory Discussions and Financial Situation - Business Wire - December 19th, 2024
- Atsena completes dosing in part A of X-linked retinoschisis gene therapy trial - Healio - December 19th, 2024
- Astellas and Sangamo Therapeutics Announce Capsid License Agreement to Deliver Genomic Medicines for Neurological Diseases - StreetInsider.com - December 19th, 2024
- Ring Therapeutics lays off just under half of staff in 2nd wave of cuts this year, CEO set to step down - Fierce Biotech - December 19th, 2024
- Gov. Hochul celebrates opening of first cell and gene therapy hub in NYS - WIVB.com - News 4 - December 19th, 2024
- Muscular Dystrophy Association and Coalition to Cure - GlobeNewswire - December 19th, 2024
- Atsena Therapeutics Announces Dosing Completed in Part A of - GlobeNewswire - December 19th, 2024
- 'A milestone moment': Roswell Park celebrates opening New York's first cell and gene therapy hub - WKBW 7 News Buffalo - December 19th, 2024
- Gene therapy to prevent stillbirth and premature delivery developed - News-Medical.Net - December 19th, 2024
- Breaking through the blood-brain barrier - Science - December 19th, 2024
- Cell therapy weekly: partnerships for advancing cell and gene therapies - RegMedNet - December 19th, 2024
- Roswell Park Opens Cell, Gene Therapy Hub - WGRZ.com - December 19th, 2024
- Cartherics gets $300k grant to advance Cell and Gene Therapy development - ETHealthWorld - December 19th, 2024
- ELMCRx Solutions Offers Cell & Gene Therapy Support Through Partnership with Emerging Therapy Solutions (ETS) - Business Wire - December 19th, 2024
- Fueling the Future of Gene Therapies with Manufacturing Innovation, Upcoming Webinar Hosted by Xtalks - PR Web - December 19th, 2024
- Concinnity secures 3M Seed funding to advance AI-driven gene therapy safety - Tech.eu - December 19th, 2024
- Viral Vectors-Based Gene Therapy for Non-Human Primates Market to Reach Over USD 92.76 Million by 2034 - EIN News - December 19th, 2024
- The pharma industry's silence on RFK Jr., and efforts by parents to develop gene therapies for their children - STAT - December 19th, 2024
- Tenaya reports positive early data on heart gene therapy - Investing.com - December 19th, 2024
- Unraveling The Complexity Of Cell Therapy: Advancements And Challenges - Life Science Leader Magazine - November 27th, 2024
- Novartis wagers more than $1B on gene therapies for the nervous system - BioPharma Dive - November 27th, 2024
- Gene therapy for geographic atrophy in age-related macular degeneration: current insights - Nature.com - November 27th, 2024
- Novartis buys gene therapy startup Kate Therapeutics, joining pursuit of muscular dystrophy treatment - STAT - November 27th, 2024
- At MGB's gene therapy institute, effort to win first venture capital investments continues - The Business Journals - November 27th, 2024
- Neurogene reports death of Rett patient left in critical condition by high dose of gene therapy - Fierce Biotech - November 27th, 2024
- Alzheimer Disease Awareness Month 2024: Looking Back at a Year of Progress in Cell and Gene Therapy - CGTLive - November 27th, 2024
- Why This Gene-Therapy Companys Stock Is Rising 228% - Yahoo! Voices - November 27th, 2024
- How Minaris is Tackling the Scalability Challenge in Cell and Gene Therapy: A Conversation with CEO, Dr. Hiroto Bando - geneonline - November 27th, 2024
- RNA editing is the next frontier in gene therapy heres what you need to know - The Conversation - November 27th, 2024
- Assessment of gene therapy viral vectors in RPE cells - News-Medical.Net - November 27th, 2024
- Retinal organoids and RPE models for retinal gene therapy development - News-Medical.Net - November 27th, 2024
- China Vows to Bolster Gene Therapy Research in Key Biotech Hub - Bloomberg - November 27th, 2024
- Gene Therapy - Volume 31 Issue 11-12, November 2024 - Nature.com - November 27th, 2024
- Iovance Biotherapeutics Announces the Promotion of Raj Puri, M.D., Ph.D. to Chief Regulatory Officer - GlobeNewswire - November 27th, 2024
- Patient Dies in Gene Therapy Trial, But FDA Permits Neurogene to Proceed With Low Dose - MedCity News - November 27th, 2024
- New CRISPR system pauses genes, rather than turning them off permanently - Livescience.com - November 27th, 2024
- Liver-targeting gene therapy lowers mice whole-body SMA symptoms - SMA News Today - November 27th, 2024
- Bright breakthroughs: Real stories of beating rare disease - Science - November 27th, 2024
- Sarepta Therapeutics Announces Global Licensing and Collaboration Agreement with Arrowhead Pharmaceuticals for Multiple Clinical and Preclinical siRNA... - November 27th, 2024