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Biomedical subjects

Haydar Frangoul

Publications and source records attributed to Haydar Frangoul.

2 recordsLinked to original sources

Exa-cel in Children with Transfusion-Dependent β-Thalassemia or Sickle Cell Disease.

BACKGROUND: Exagamglogene autotemcel (exa-cel) is a cell therapy in which autologous CD34+ hematopoietic cells are engineered through ex vivo clustered regularly interspaced short palindromic repeats-Cas9 editing of the erythroid-specific enhancer region of BCL11A to express fetal hemoglobin. In phase 3 studies involving participants 12 to 35 years of age with sickle cell disease or transfusion-dependent β-thalassemia, exa-cel eliminated vaso-occlusive crises and the need for red-cell transfusions. METHODS: In two ongoing, phase 3, open-label, single-group studies, we evaluated exa-cel in children 5 to 11 years of age with transfusion-dependent β-thalassemia or sickle cell disease. Before exa-cel infusion, participants underwent myeloablative conditioning with pharmacokinetically dose-adjusted busulfan. The primary end points were transfusion independence for at least 12 consecutive months in children with transfusion-dependent β-thalassemia and freedom from severe vaso-occlusive crises for at least 12 consecutive months in children with sickle cell disease. RESULTS: A total of 15 children with transfusion-dependent β-thalassemia and 11 with sickle cell disease received exa-cel; median follow-up was 16.0 months (range, 2.2 to 32.1) and 16.9 months (range, 7.6 to 33.1), respectively. Of 8 children with transfusion-dependent β-thalassemia who were followed to at least 16 months, 8 were transfusion independent; the status of the remaining 7 was not yet evaluable. Of 8 children with sickle cell disease who were followed to at least 16 months, 8 were free of vaso-occlusive crises; the status of the remaining 3 was not yet evaluable. All the children had at least one grade 3 or 4 adverse event; 2 children with transfusion-dependent β-thalassemia had severe veno-occlusive liver disease that was assessed as being related to busulfan conditioning, 1 of whom died. CONCLUSIONS: Exa-cel therapy resulted in transfusion independence or freedom from severe vaso-occlusive crises in participants with transfusion-dependent β-thalassemia or sickle cell disease, respectively, who were followed for at least 16 months. All the participants had grade 3 or 4 adverse events. (Funded by Vertex Pharmaceuticals and CRISPR Therapeutics; CLIMB THAL-141 ClinicalTrials.gov number, NCT05356195; CLIMB SCD-151 ClinicalTrials.gov number, NCT05329649.).

Child

Prime Editing for p47phox-Deficient Chronic Granulomatous Disease.

Chronic granulomatous disease (CGD) is a severe monogenic immunodeficiency caused by damaging variants in genes required for microbicidal NADPH oxidase activity. Autosomal recessive p47phox-deficient CGD (p47-CGD) is predominantly caused by a two-nucleotide deletion in exon 2 (delGT) of NCF1. We developed PM359, an autologous CD34+ hematopoietic stem-cell therapy in which prime editing is used to correct delGT. Two participants received PM359 after myeloid conditioning with busulfan: neutrophils and platelets engrafted promptly in both patients. Adverse events were consistent with myeloid conditioning with busulfan. NADPH oxidase activity was observed in neutrophils within 1 month and was maintained for 6 months and 4 months as of the last follow-up visit in Participants 1 and 2, respectively. These results support further investigation of prime editing of CD34+ cells to treat p47-CGD. (Funded by Prime Medicine; ClinicalTrials.gov number, NCT06559176.).

Adolescent