EMBL Australia, Single Molecule Science node, School of Biomedical Sciences, University of New South Wales, Sydney, NSW 2052, Australia.
Biochem Soc Trans. 2024 Jun 26;52(3):1489-1502. doi: 10.1042/BST20231427.
The tumor microenvironment (TME) is a complex and dynamic ecosystem that adjoins the cancer cells within solid tumors and comprises distinct components such as extracellular matrix, stromal and immune cells, blood vessels, and an abundance of signaling molecules. In recent years, the mechanical properties of the TME have emerged as critical determinants of tumor progression and therapeutic response. Aberrant mechanical cues, including altered tissue architecture and stiffness, contribute to tumor progression, metastasis, and resistance to treatment. Moreover, burgeoning immunotherapies hold great promise for harnessing the immune system to target and eliminate solid malignancies; however, their success is hindered by the hostile mechanical landscape of the TME, which can impede immune cell infiltration, function, and persistence. Consequently, understanding TME mechanoimmunology - the interplay between mechanical forces and immune cell behavior - is essential for developing effective solid cancer therapies. Here, we review the role of TME mechanics in tumor immunology, focusing on recent therapeutic interventions aimed at modulating the mechanical properties of the TME to potentiate T cell immunotherapies, and innovative assays tailored to evaluate their clinical efficacy.
肿瘤微环境(TME)是一个复杂且动态的生态系统,毗邻实体瘤中的癌细胞,由细胞外基质、基质和免疫细胞、血管以及大量信号分子等不同成分组成。近年来,TME 的力学特性已成为肿瘤进展和治疗反应的关键决定因素。异常的力学线索,包括组织结构和硬度的改变,促进了肿瘤的进展、转移和对治疗的耐药性。此外,新兴的免疫疗法有望利用免疫系统来靶向和消除实体恶性肿瘤;然而,TME 恶劣的力学环境阻碍了免疫细胞的浸润、功能和持久性,限制了它们的成功。因此,了解 TME 的力学免疫学——力学力与免疫细胞行为之间的相互作用——对于开发有效的实体癌症疗法至关重要。在这里,我们综述了 TME 力学在肿瘤免疫学中的作用,重点介绍了最近旨在调节 TME 力学特性以增强 T 细胞免疫疗法的治疗干预措施,以及专门用于评估其临床疗效的创新检测方法。