决定异体 CAR T 细胞排斥与扩增的细胞和分子机制
Cellular and molecular mechanisms determining allogeneic CAR T cell rejection and expansion.
我们评估了11例接受单一批次cemacabtagene ansegedleucel(cema-cel)治疗的大B细胞淋巴瘤患者,cemacabtagene ansegedleucel是一种异体抗CD19 CAR T产品。
英文原题:Reprogramming the tumor microenvironment via TFF3 targeting: a potential novel avenue to boost CAR-T cell therapy in solid tumors.
CAR-T 细胞疗法在血液系统恶性肿瘤中已显示出巨大成功。
CAR-T细胞疗法治疗血液系统恶性肿瘤取得显著成功,但由于恶劣肿瘤微环境(TME)带来的关键障碍,该策略治疗实体瘤面临重大挑战。TME纤维化致密且血管异常,导致输入的T细胞难以浸润肿瘤,从而妨碍实体瘤CAR-T治疗。此外,实体瘤会形成高度免疫抑制环境,使功能性CAR-T细胞的细胞毒活性和持久性丧失。Trefoil因子家族(TFF)肽,尤其TFF3,因其促肿瘤作用而日益受到关注。近期证据显示,TFF3在实体瘤中上调,可促进化疗耐药、癌细胞生存和增殖、免疫抑制细胞扩增及血管生成,进而导致肿瘤血管异常。本综述探讨TFF3信号如何推动肿瘤进展和免疫逃逸,以及抑制TFF3能否重塑TME、支持CAR-T细胞功能。越来越多证据提示,阻断TFF3可能减轻免疫抑制、恢复更正常的血管结构,并破坏癌症干细胞(CSC)驱动的促纤维化及促肿瘤相互作用。同时,TFF3对保护黏膜组织及损伤后修复十分重要,因此抑制时需谨慎。我们还讨论如何选择性地在肿瘤内阻断TFF3,同时尽量减少对健康组织的不良影响。深入理解TFF3对治疗耐药的作用,或将带来增强实体瘤CAR-T疗效的新机会,可通过联合治疗或CAR-T输注前预处理实现。
CAR-T cell therapy has shown great success in hematological malignancies. However, this immunotherapeutic strategy faces critical challenges in solid tumors mainly due to the key hurdles brought about by the hostile tumor microenvironment (TME). Effective CAR-T cell therapy in solid tumors is hampered by low tumor infiltration of the administered T cells due to the dense fibrotic nature of the TME and its aberrant vasculature. Also, solid tumors shape a highly immunosuppressive milieu in which the cytotoxic activity and persistence of functional CAR-T cells are abolished. Trefoil factor family (TFF) peptides, especially TFF3, have recently drawn a lot of attention due to their pro-tumor activities. Based on the recent evidence, TFF3 is upregulated in solid tumors where it plays roles in chemotherapy resistance, increased survival, and proliferation of cancer cells, expansion of the immunosuppressive cells and enhanced angiogenesis, which contributes to the aberrant tumor vasculature. In this review, we explore how TFF3 signaling contributes to tumor progression and immune escape, and how its inhibition might reshape the tumor microenvironment (TME) to better support CAR-T cell activity. Mounting evidence suggests that blocking TFF3 could help reduce immunosuppression, restore more normal blood vessel structure, and disrupt the pro-fibrotic and tumor-promoting interactions driven by cancer stem cells (CSCs). At the same time, since TFF3 plays an important role in protecting mucosal tissues and promoting repair after injury, its inhibition needs to be approached carefully. We also discuss strategies to selectively block TFF3 within tumors while minimizing unwanted effects on healthy tissues. Gaining a deeper understanding of how TFF3 contributes to therapy resistance may open up new opportunities to enhance CAR-T cell treatment in solid tumors, either through combination therapies or as a preconditioning step before CAR-T cell infusion.
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