研究概要
我们的 hPSC CAR-NK 工程平台是模块化的,可能构成一种切实可行的策略,用于生产具有免疫记忆样表型的现货型 CAR-NK 细胞以进行靶向免疫治疗。
中文摘要
过继CAR-NK治疗多种癌症显示前景,但免疫记忆有限及异体供者细胞数量不足限制其临床前和临床拓展。本研究首先评估8种CAR构建体,以抗PD-L1纳米抗体和/或通用抗荧光素(FITC)单链抗体片段(scFv)增强NK-92细胞对异质性实体瘤的抗原特异性增殖和杀伤。随后以优化CAR工程化人多能干细胞(hPSC),并分化为具功能的双CAR-NK。对肿瘤微环境有响应的抗PD-L1 CAR通过胞内截短IL-2受体γ链和STAT3结合YXXQ基序,依赖抗原激活pSTAT3及pSTAT5通路,有效促进hPSC-NK增殖和细胞毒性。给予FITC-叶酸双特异适配器,使可编程抗FITC CAR与表达叶酸受体α的乳腺癌细胞桥接后,PD-L1诱导的记忆样hPSC-NK抗肿瘤活性进一步增强。总体而言,该hPSC CAR-NK工程平台具模块化特征,可用于制备具有记忆样免疫表型的现货型CAR-NK定向免疫治疗。
展开英文摘要原文
Adoptive chimeric antigen receptor (CAR)-engineered natural killer (NK) cells have shown promise in treating various cancers. However, limited immunological memory and access to sufficient numbers of allogenic donor cells have hindered their broader preclinical and clinical applications. Here, we first assess eight different CAR constructs that use an anti-PD-L1 nanobody and/or universal anti-fluorescein (FITC) single-chain variable fragment (scFv) to enhance antigen-specific proliferation and anti-tumor cytotoxicity of NK-92 cells against heterogenous solid tumors. We next genetically engineer human pluripotent stem cells (hPSCs) with optimized CARs and differentiate them into functional dual CAR-NK cells. The tumor microenvironment responsive anti-PD-L1 CAR effectively promoted hPSC-NK cell proliferation and cytotoxicity through antigen-dependent activation of phosphorylated STAT3 (pSTAT3) and pSTAT5 signaling pathways via an intracellular truncated IL-2 receptor -chain ( IL-2R ) and STAT3-binding tyrosine-X-X-glutamine (YXXQ) motif. Anti-tumor activities of PD-L1-induced memory-like hPSC-NK cells were further boosted by administering a FITC-folate bi-specific adapter that bridges between a programmable anti-FITC CAR and folate receptor alpha-expressing breast tumor cells. Collectively, our hPSC CAR-NK engineering platform is modular and could constitute a realistic strategy to manufacture off-the-shelf CAR-NK cells with immunological memory-like phenotype for targeted immunotherapy.
论文信息
- 作者
- Chang Y、Jin G、Luo W、Luo Q、Jung J、Hummel SN、Torregrosa-Allen S、Elzey BD
- 单位
- Davidson School of Chemical Engineering, Purdue University, West Lafayette, IN, 47907, USA.United States
- 期刊
- Bioactive materials2023 Sep