生物
造血
干细胞
移植
基因
表型
遗传学
基因组编辑
人口
造血干细胞
计算生物学
基因组
医学
人口学
外科
社会学
作者
H. Becker,Reiko Ishida,Adam C. Wilkinson,Takaharu Kimura,Michelle Sue Jann Lee,Cevayir Coban,Yasunori Ota,Yosuke Tanaka,Meike Roskamp,Tsubasa Sano,Arinobu Tojo,David G. Kent,Satoshi Yamazaki
出处
期刊:Cell Stem Cell
[Elsevier]
日期:2023-06-28
卷期号:30 (7): 987-1000.e8
被引量:9
标识
DOI:10.1016/j.stem.2023.06.002
摘要
Gene editing using engineered nucleases frequently produces unintended genetic lesions in hematopoietic stem cells (HSCs). Gene-edited HSC cultures thus contain heterogeneous populations, the majority of which either do not carry the desired edit or harbor unwanted mutations. In consequence, transplanting edited HSCs carries the risks of suboptimal efficiency and of unwanted mutations in the graft. Here, we present an approach for expanding gene-edited HSCs at clonal density, allowing for genetic profiling of individual clones before transplantation. We achieved this by developing a defined, polymer-based expansion system and identifying long-term expanding clones within the CD201+CD150+CD48−c-Kit+Sca-1+Lin− population of precultured HSCs. Using the Prkdcscid immunodeficiency model, we demonstrate that we can expand and profile edited HSC clones to check for desired and unintended modifications, including large deletions. Transplantation of Prkdc-corrected HSCs rescued the immunodeficient phenotype. Our ex vivo manipulation platform establishes a paradigm to control genetic heterogeneity in HSC gene editing and therapy.
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