Elbanna Yassmin A, Tello-Lafoz Maria, Holland Aliya, Zhang Ye, Kwak Jun-Goo, Wang Zhenghan, Yakimov Alexandrina, Dada Myra, Vayner Samuel, Duquette Sarah M, Kim Young Hun, Bale Tejus A, Winer Benjamin Y, Yu Kenny K H, Massagué Joan, Lee Jungwoo, Barzilai Ori, Manalis Scott R, Huse Morgan
Louis V. Gerstner, Jr., Graduate School of Biomedical Sciences, Memorial Sloan Kettering Cancer Center, New York, NY USA.
Immunology Program, Memorial Sloan Kettering Cancer Center, New York, NY USA.
bioRxiv. 2025 May 13:2025.05.10.653256. doi: 10.1101/2025.05.10.653256.
Cancer cells alter their mechanical properties in response to the rigidity of their environment. Here, we explored the implications of this environmental mechanosensing for anti-tumor immunosurveillance using single cell biophysical profiling and metastasis models. Cancer cells stiffened in more rigid environments, a biophysical change that sensitized them to cytotoxic lymphocytes. In immunodeficient mice, this behavior manifested in the outgrowth of stiffer metastatic cells in the rigid bone than in the soft lung, while in immunocompetent hosts, it led to preferential elimination of stiffer cancer cells and suppression of bone metastasis. Environmentally-induced cell stiffening and immune sensitization both required Osteopontin, a secreted glycoprotein that is upregulated during bone colonization. Analysis of patient metastases spanning mechanically distinct tissues revealed associations between environmental rigidity, immune infiltration, and cancer cell stiffness consistent with mechanically driven immunosurveillance. These results demonstrate how environmental mechanosensing modulates anti-tumor immunity and suggest a mechanoimmunological basis for metastatic site selection.
癌细胞会根据其周围环境的硬度改变自身的力学特性。在此,我们利用单细胞生物物理分析和转移模型,探究了这种环境机械传感对抗肿瘤免疫监视的影响。癌细胞在更坚硬的环境中会变硬,这种生物物理变化使它们对细胞毒性淋巴细胞敏感。在免疫缺陷小鼠中,这种现象表现为坚硬骨组织中较硬的转移细胞比柔软肺组织中的生长得更多;而在免疫健全的宿主中,它导致较硬癌细胞被优先清除,并抑制骨转移。环境诱导的细胞变硬和免疫致敏都需要骨桥蛋白,这是一种在骨定植过程中上调的分泌型糖蛋白。对跨越力学特性不同组织的患者转移灶分析显示,环境硬度、免疫浸润和癌细胞硬度之间存在关联,这与机械驱动的免疫监视一致。这些结果证明了环境机械传感如何调节抗肿瘤免疫,并为转移部位选择提供了机械免疫学基础。