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:Trogocytosis at the crossroad of cancer and immunity: mechanisms, implications and therapeutic perspectives.
吞噬作用,一种细胞间快速且依赖接触的质膜片段及相关分子的交换,近期在癌症生物学中崭露头角,成为关键但常被忽视的角色。
吞噬作用(Trogocytosis),一种细胞间快速且接触依赖的质膜片段及相关分子的交换,近期在癌症生物学中被确认为一个关键但常被低估的角色。传统上在免疫细胞通讯背景下研究,吞噬作用现已被认识到在多种恶性肿瘤中调节肿瘤进展和治疗反应中扮演矛盾角色。本综述强调了吞噬作用在塑造肿瘤微环境(TME)、促进免疫逃逸及影响转移潜能中的新颖且动态功能。值得注意的是,癌细胞利用吞噬作用获取免疫调节分子,如CD45、CD4及检查点蛋白,有效抑制抗肿瘤反应同时增强自身生存能力。同时,包括巨噬细胞、T细胞和自然杀伤(NK)细胞在内的免疫效应细胞,通过吞噬作用识别、攻击甚至杀死肿瘤细胞,机制包括吞噬凋亡(trogoptosis)。强有力的新证据也将吞噬作用与治疗抵抗联系起来,特别是在嵌合抗原受体(CAR-T和CAR-NK)细胞疗法中,肿瘤抗原如CD19和CD22被效应细胞吸走,导致T细胞自相残杀、功能耗竭及肿瘤复发。除了其生物学意义,吞噬作用在肿瘤学中作为转化工具正受到关注。它提供了一个新颖平台,用于抗原特异性药物递送、空间限制性免疫调节及通过检测循环免疫细胞或细胞外囊泡上的吞噬分子进行生物标志物发现。这些发现重新定义了吞噬作用,它不仅仅是被动的膜交换过程,而是细胞间通讯的核心机制,对癌症进展、免疫治疗和精准医学具有深远意义。
Trogocytosis, a rapid and contact-dependent exchange of plasma membrane fragments and associated molecules between cells, has recently emerged as a critical but underappreciated player in cancer biology. Traditionally studied in the context of immune cell communication, trogocytosis is now recognized for its paradoxical role in modulating tumor progression and therapeutic response across a broad spectrum of malignancies. This review highlights the novel and dynamic functions of trogocytosis in shaping the tumor microenvironment (TME), promoting immune evasion and influencing metastatic potential. Notably, cancer cells exploit trogocytosis to acquire immune regulatory molecules such as CD45, CD4 and checkpoint proteins, effectively dampening anti-tumor responses while enhancing their own survival. Simultaneously, immune effector cells including macrophages, T cells and natural killer (NK) cells leverage trogocytosis to recognize, attack and even kill tumor cells through mechanisms such as trogoptosis. Compelling new evidence also links trogocytosis to therapeutic resistance, particularly in chimeric antigen receptor (CAR-T and CAR-NK) cell therapies, where tumor antigens like CD19 and CD22 are siphoned off by effector cells, leading to T cell fratricide, functional exhaustion and tumor relapse. Beyond its biological significance, trogocytosis is gaining attention as a translational tool in oncology. It offers a novel platform for antigen-specific drug delivery, spatially restricted immune modulation and biomarker discovery through the detection of trogocytosed molecules on circulating immune-cells or extracellular vesicles. These findings redefine trogocytosis as not merely a passive membrane exchange process, but a central mechanism of intercellular communication with profound implications for cancer progression, immunotherapy and precision medicine.
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