Clonal selection of hematopoietic stem cells after gene therapy for sickle cell disease

浏览次数:50 分享:

Michael Spencer Chapman #, Alyssa H Cull #, Marioara F Ciuculescu, Erica B Esrick, Emily Mitchell, Hyunchul Jung, Laura O'Neill, Kirsty Roberts, Margarete A Fabre, Nicholas Williams, Jyoti Nangalia, Joanne Quinton, James M Fox, Danilo Pellin, Julie Makani, Myriam Armant, David A Williams, Peter J Campbell, David G Kent

  • Nat Med
  • 87.241
  • 2023 Dec;29(12):3175-3183.
  • Pig
  • 流式
  • 药物研发
  • 干细胞
  • 基因治疗
  • CD99,Pig CD4a

Abstract

Gene therapy (GT) provides a potentially curative treatment option for patients with sickle cell disease (SCD); however, the occurrence of myeloid malignancies in GT clinical trials has prompted concern, with several postulated mechanisms. Here, we used whole-genome sequencing to track hematopoietic stem cells (HSCs) from six patients with SCD at pre- and post-GT time points to map the somatic mutation and clonal landscape of gene-modified and unmodified HSCs. Pre-GT, phylogenetic trees were highly polyclonal and mutation burdens per cell were elevated in some, but not all, patients. Post-GT, no clonal expansions were identified among gene-modified or unmodified cells; however, an increased frequency of potential driver mutations associated with myeloid neoplasms or clonal hematopoiesis (DNMT3A- and EZH2-mutated clones in particular) was observed in both genetically modified and unmodified cells, suggesting positive selection of mutant clones during GT. This work sheds light on HSC clonal dynamics and the mutational landscape after GT in SCD, highlighting the enhanced fitness of some HSCs harboring pre-existing driver mutations. Future studies should define the long-term fate of mutant clones, including any contribution to expansions associated with myeloid neoplasms.
金课堂之文献解析 文献原文请点击

技术文章 更多

    研究领域 更多

      热点文献