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Published on: April 11, 2018
[Cystinosis: From the gene identification to the first gene therapy clinical trial]
1Department of Pediatrics, Division of Genetics, University of California, San Diego, La Jolla, California, États-Unis.
Insights
Gene therapy using modified stem cells offers a promising new treatment for cystinosis, a rare genetic disorder. This approach aims to deliver the functional CTNS gene to correct cystine buildup and preserve organ function.
Area of Science:
- Biochemistry
- Genetics
- Regenerative Medicine
Background:
- Cystinosis is an inherited metabolic disorder causing cystine accumulation in lysosomes, leading to multi-organ failure and premature death.
- Current treatments like cysteamine only slow disease progression, highlighting the need for more effective therapies.
- Identification of the CTNS gene and its role in cystine transport paved the way for gene therapy development.
Approach:
- Development of a mouse model (Ctns-/- mice) to study cystinosis pathophysiology and test therapeutic strategies.
- Utilizing hematopoietic stem and progenitor cells (HSPCs) as a vehicle for gene delivery to target tissues.
- Employing ex vivo lentiviral vector modification of autologous HSPCs to introduce a functional CTNS cDNA.
Key Points:
- Successful integration of bone marrow-derived cells and significant reduction in tissue cystine accumulation following wild-type HSPC transplantation.
- Demonstrated efficacy of autologous ex vivo gene-modified HSPC transplantation in ameliorating cystinosis complications in mice.
- Successful completion of preclinical pharmacology/toxicology studies and development of a manufacturing process for human CD34+ cells.
Conclusions:
- The gene therapy approach using modified HSPCs has shown significant potential in preclinical studies for cystinosis.
- The development pathway from gene identification to a clinical trial-ready therapy has been established.
- A Phase 1/2 clinical trial for cystinosis, initiated following FDA clearance, is currently underway, representing a significant advancement in treating this rare disease.
Abstract:
Cystinosis is an autosomal recessive metabolic disease characterized by lysosomal accumulation of cystine in all the cells of the body. Infantile cystinosis begins in infancy by a renal Fanconi syndrome and eventually leads to multi-organ failure, including the kidney, eye, thyroid, muscle, and pancreas, eventually causing premature death in early adulthood. The current treatment is the drug cysteamine that only delays the progression of the disease. We identified the gene involved, CTNS, and showed that the encoded protein, cystinosin, is a proton-driven cystine transporter. We generated a mouse model of cystinosis, the Ctns-/- mice, that recapitulates the main disease complications. The goal was next to develop a gene therapy approach for cystinosis. We used bone marrow stem cells as a vehicle to bring the healthy CTNS gene to tissues, and we showed that wild-type hematopoietic stem and progenitor cell (HSPC) transplantation led to abundant tissue integration of bone marrow-derived cells, significant decrease of tissue cystine accumulation and long-term kidney, eye and thyroid preservation. We then developed an autologous transplantation approach of HSPCs modified ex vivo using a lentiviral vector to introduce a functional CTNS cDNA, and showed its efficacy in Ctns-/- mice. We conducted the pharmacology/toxicology studies, developed the manufacturing process using human CD34+ cells, and design the clinical trial. We received Food and Drug Administration (FDA)-clearance to start a phase 1/2 clinical trial for cystinosis in December 2018. Six patients have been treated so far. In this review, we describe the path to go from the gene to a gene therapy approach for cystinosis.
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