CAR-T(CAR-T)细胞疗法在非肿瘤性疾病中的应用
Chimeric antigen receptor T (CAR-T) cell therapy in non-oncological diseases.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:B cells enhance EphA2 chimeric antigen receptor T cells cytotoxicity against glioblastoma via improving persistence.
B cells enhance EphA2 chimeric antigen receptor T cells cytotoxicity against glioblastoma via improving persistence.
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嵌合抗原受体(CAR)T细胞疗法是一种针对血液肿瘤的强大过继性免疫疗法,但其对实体瘤的治疗效果不够理想。据报道,B细胞在调节记忆T细胞分化和细胞毒性T细胞发育中发挥关键作用。
然而,迄今为止,此类B细胞对CAR-T 细胞的影响尚未被讨论。在本研究中,我们使用针对ephrin A型受体2(EphA2)的特异性CAR-T 细胞,成功培养B细胞以在体外刺激CAR-T 细胞,并研究了细胞分化和抗肿瘤效率。
我们观察到,经B细胞刺激的EphA2-CAR-T 细胞表现出干扰素(IFN)产生增加和OX40表达上调,以及抗肿瘤活性增强和PD-1表达降低。B细胞刺激超过7天后,CAR-T 细胞的持久性增强,中央记忆T细胞(T CM)亚群增加。
此外,我们进行了下一代测序以探索潜在机制。上调的基因聚集于免疫反应激活、趋化因子信号通路、钙信号通路、cGMP-PKG信号通路等,这些有助于经B细胞刺激的CAR-T 细胞抗胶质母细胞瘤(GBM)活性上调。
此外,与B细胞共培养后,CAR-T 细胞中MEF2C、CD40、SYK和TNFRSF13B表达上调。这些基因在功能上富集于促进淋巴细胞增殖,并可能有助于增强CAR-T 细胞的持久性。
总之,这些结果表明B细胞在延长CAR-T 细胞寿命和增强抗肿瘤活性中起关键作用,这为未来利用EphA2-CAR-T 细胞治疗GBM开辟了道路。
Chimeric antigen receptor (CAR) T cell therapy is a powerful adoptive immunotherapy against blood cancers, but the therapeutic effect was not efficient enough on solid tumors. B cells have been reported to play a critical role in regulating memory T differentiation and cytotoxic T development.
However, as of yet the influence of such B cells on CAR T cells has not been discussed. In this study, using ephrin type-A receptor 2 (EphA2) specific CAR T cells, we cultured B cells successfully to stimulate CAR T cells in vitro, and investigated the cell differentiation and anti-tumor efficiency.
We observed that EphA2-CAR T cells stimulated by B cells performed increased interferon (IFN ) production and upregulated OX40 expression, as well as the enhanced anti-tumor activity and reduced PD-1 expression. The persistence of CAR T cells was enhanced after B cells stimulation for more than 7 days with the increased subset of central memory T cells (T CM ).
In addition, next generation sequencing was performed to explore the underlying mechanisms. The up-regulated genes clustered in, immune response activation, chemokine signaling pathway, calcium signaling pathway, cGMP-PKG signaling pathway and et al. which contributed to the upregulated anti-glioblastoma (GBM) activity of CAR T cells stimulated by B cell.
Furthermore, MEF2C, CD40, SYK and TNFRSF13B were upregulated in CAR T cells after co-culturing with B cells. These genes functionally enriched in promoting lymphocytes proliferation and may contribute to the enhanced persistence of CAR T cells.
In conclusion, these results indicated the critical role of B cells in prolonging CAR T cells longevity and enhancing anti-tumor activity, which paves the way for the therapeutic exploitation of EphA2-CAR T cells against GBM in the future.
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