Development of β-globin gene correction in human hematopoietic stem cells as a potential durable treatment for sickle cell disease

人类造血干细胞中 β 珠蛋白基因校正的开发可作为镰状细胞病的潜在持久治疗方法

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作者:Annalisa Lattanzi, Joab Camarena, Premanjali Lahiri, Helen Segal, Waracharee Srifa, Christopher A Vakulskas, Richard L Frock, Josefin Kenrick, Ciaran Lee, Narae Talbott, Jason Skowronski, M Kyle Cromer, Carsten T Charlesworth, Rasmus O Bak, Sruthi Mantri, Gang Bao, David DiGiusto, John Tisdale, J Fr

Abstract

Sickle cell disease (SCD) is the most common serious monogenic disease with 300,000 births annually worldwide. SCD is an autosomal recessive disease resulting from a single point mutation in codon six of the β-globin gene (HBB). Ex vivo β-globin gene correction in autologous patient-derived hematopoietic stem and progenitor cells (HSPCs) may potentially provide a curative treatment for SCD. We previously developed a CRISPR-Cas9 gene targeting strategy that uses high-fidelity Cas9 precomplexed with chemically modified guide RNAs to induce recombinant adeno-associated virus serotype 6 (rAAV6)-mediated HBB gene correction of the SCD-causing mutation in HSPCs. Here, we demonstrate the preclinical feasibility, efficacy, and toxicology of HBB gene correction in plerixafor-mobilized CD34+ cells from healthy and SCD patient donors (gcHBB-SCD). We achieved up to 60% HBB allelic correction in clinical-scale gcHBB-SCD manufacturing. After transplant into immunodeficient NSG mice, 20% gene correction was achieved with multilineage engraftment. The long-term safety, tumorigenicity, and toxicology study demonstrated no evidence of abnormal hematopoiesis, genotoxicity, or tumorigenicity from the engrafted gcHBB-SCD drug product. Together, these preclinical data support the safety, efficacy, and reproducibility of this gene correction strategy for initiation of a phase 1/2 clinical trial in patients with SCD.

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