CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Immune checkpoint inhibitors as mediators for immunosuppression by cancer-associated fibroblasts: A comprehensive review.
Immune checkpoint inhibitors as mediators for immunosuppression by cancer-associated fibroblasts: A comprehensive review.
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肿瘤微环境(TME)是癌症进展的重要促进因素,其中包含细胞与化学组分之间的复杂联系,并为肿瘤的生长和发展提供了适宜的基质。越来越多的证据表明,仅靶向肿瘤细胞而忽视周围的TME,不足以有效克服癌症疾病。成纤维细胞是基质的重要哨兵,由于TME中的某些条件(如氧化应激和局部缺氧),它们被激活,并在物理支撑肿瘤细胞和增强肿瘤发生中发挥突出作用。TME中被激活的成纤维细胞被定义为癌相关成纤维细胞(CAFs),在调控肿瘤的生物学行为(如肿瘤转移和耐药性)中发挥关键作用。CAFs是高度异质性的群体,具有不同的来源,除了支持基质细胞的作用外,还通过膜和分泌模式具有多种免疫抑制功能。不同细胞因子/趋化因子的分泌、介导调节性免疫细胞募集的相互作用以及未成熟髓系细胞中免疫抑制功能的重新编程,只是CAFs通过对特定免疫细胞群体的各种直接和间接机制促进肿瘤免疫逃逸的几个例子。
此外,CAFs直接消除细胞毒性淋巴细胞的作用。抑制性免疫检查点(iICPs)或其配体在TME区室中的激活和过表达,是癌症病灶中使TIL(肿瘤浸润淋巴细胞)失活的主要调控机制之一。CAFs在iICPs的诱导或表达以及TME中免疫应答的抑制中也是重要的参与者。基于现有研究,CAF亚群可通过iICP以两种方式调节TME中免疫细胞的功能;活化的CAF直接表达iICP,以及通过产生可溶性因子间接诱导,进而上调TME中的iICP。本综述聚焦于CAF在TME中诱导iICP的直接和间接作用及其在免疫治疗和诊断中的应用,呈现了对CAF在TME中免疫抑制机制不断发展的认识。全面理解CAF将有助于开发改善精准癌症治疗的新策略。
The tumor microenvironment (TME) is a significant contributor to cancer progression containing complex connections between cellular and chemical components and provides a suitable substrate for tumor growth and development. Growing evidence shows targeting tumor cells while ignoring the surrounding TME is not effective enough to overcome the cancer disease. Fibroblasts are essential sentinels of the stroma that due to certain conditions in TME, such as oxidative stress and local hypoxia, become activated, and play the prominent role in the physical support of tumor cells and the enhancement of tumorigenesis.
Activated fibroblasts in TME, defined as cancer-associated fibroblasts (CAFs), play a crucial role in regulating the biological behavior of tumors, such as tumor metastasis and drug resistance. CAFs are highly heterogeneous populations that have different origins and, in addition to their role in supporting stromal cells, have multiple immunosuppressive functions via a membrane and secretory patterns.
The secretion of different cytokines/chemokines, interactions that mediate the recruitment of regulatory immune cells and the reprogramming of an immunosuppressive function in immature myeloid cells are just a few examples of how CAFs contribute to the immune escape of tumors through various direct and indirect mechanisms on specific immune cell populations.
Moreover, CAFs directly abolish the role of cytotoxic lymphocytes. The activation and overexpression of inhibitory immune checkpoints (iICPs) or their ligands in TME compartments are one of the main regulatory mechanisms that inactivate tumor-infiltrating lymphocytes in cancer lesions. CAFs are also essential players in the induction or expression of iICPs and the suppression of immune response in TME.
Based on available studies, CAF subsets could modulate immune cell function in TME through iICPs in two ways; direct expression of iICPs by activated CAFs and indirect induction by production soluble and then upregulation of iICPs in TME.
With a focus on CAFs' direct and indirect roles in the induction of iICPs in TME as well as their use in immunotherapy and diagnostics, we present the evolving understanding of the immunosuppressive mechanism of CAFs in TME in this review. Understanding the complete picture of CAFs will help develop new strategies to improve precision cancer therapy.
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