CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Functional genomics for improving adoptive T-cell transfer therapies.
Functional genomics for improving adoptive T-cell transfer therapies.
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过继性细胞治疗(ACT)在一些恶性肿瘤,尤其是白血病的治疗中已取得显著成功。然而,多种因素限制了ACT在实体瘤中的持久性,包括剂量限制性毒性、免疫抑制性肿瘤微环境以及T细胞耗竭。由于过继性T细胞治疗的制造和制备为体外T细胞工程提供了时间和充分条件,正向遗传筛选可以识别可能提高其有效性的新遗传靶点。CRISPR是一种常用的功能基因组学工具,已成功用于加深我们对耐药机制的理解,并发现可能改善ACT的潜在遗传编辑。一种互补方法,Sleeping Beauty转座子诱变,提供了额外机会来识别新的遗传编辑,而不受已注释人类基因组的限制。在此,我们总结正向遗传筛选及其工具,以揭示增强ACT的策略。互补方法可以结合并改进,通过准确再现疾病特异性挑战的研究来识别可转化的遗传编辑策略。
Adoptive cell therapy (ACT) has shown remarkable success in the treatment of some malignancies, particularly leukemia.
However, there are multiple factors that limit the durability of ACT in solid tumors, including dose-limiting toxicities, the immunosuppressive tumor microenvironment, and T-cell exhaustion. As the manufacture and preparation of adoptive T-cell therapies allows time and adequate conditions for ex vivo T-cell engineering, forward genetic screens can identify novel genetic targets that could improve their effectiveness.
CRISPR is a commonly used functional genomics tool that has been successfully used to both enhance our understanding of mechanisms of resistance and to discover potential genetic edits to improve ACT. A complementary approach, Sleeping Beauty transposon mutagenesis provides additional opportunities to identify novel genetic edits without being constrained by the annotated human genome.
Here, we summarize forward genetic screens and their tools to uncover strategies to enhance ACT. Complementary approaches can be combined and improved on to identify translatable genetic editing strategies through studies that accurately recapitulate disease-specific challenges.
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