周细胞
黑色素瘤
癌症研究
免疫疗法
肿瘤微环境
血管生成
炎症
蛋白激酶B
医学
免疫系统
生物
信号转导
免疫学
细胞生物学
内皮干细胞
体外
生物化学
作者
Zhi-Jie Li,Bo He,Alice Domenichini,Jiulia Satiaputra,Kira H Wood,Devina D. Lakhiani,Abate Assefa Bashaw,Lisa M. Nilsson,Ji Li,Edward Bastow,Anna Johansson,Elena Denisenko,Alistair R. R. Forrest,Suraj Sakaram,Rafael Carretero,Günter J. Hämmerling,Jonas A. Nilsson,Gabriel Lee,Ruth Ganß
摘要
T cell-based immunotherapies are a promising therapeutic approach for multiple malignancies, but their efficacy is limited by tumor hypoxia arising from dysfunctional blood vessels. Here, we report that cell-intrinsic properties of a single vascular component, namely the pericyte, contribute to the control of tumor oxygenation, macrophage polarization, vessel inflammation, and T cell infiltration. Switching pericyte phenotype from a synthetic to a differentiated state reverses immune suppression and sensitizes tumors to adoptive T cell therapy, leading to regression of melanoma in mice. In melanoma patients, improved survival is correlated with enhanced pericyte maturity. Importantly, pericyte plasticity is regulated by signaling pathways converging on Rho kinase activity, with pericyte maturity being inducible by selective low-dose therapeutics that suppress pericyte MEK, AKT, or notch signaling. We also show that low-dose targeted anticancer therapy can durably change the tumor microenvironment without inducing adaptive resistance, creating a highly translatable pathway for redosing anticancer targeted therapies in combination with immunotherapy to improve outcome.
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