Angiotensin receptor blocker attacks armored and cold tumors and boosts immune checkpoint blockade

Author:

Mei JieORCID,Chu Jiahui,Yang Kai,Luo Zhiwen,Yang Jiayue,Xu Junying,Li Qing,Zhang YanORCID,Zhang Qinglin,Wan Mengyun,Xue Ningyi,Ding Junli,Zhu Yichao,Cai Yun,Yin Yongmei

Abstract

BackgroundImmune checkpoint blockade (ICB) has made remarkable achievements, but newly identified armored and cold tumors cannot respond to ICB therapy. The high prevalence of concomitant medications has huge impact on immunotherapeutic responses, but the clinical effects on the therapeutic outcome of armored and cold tumors are still unclear.MethodsIn this research, using large-scale transcriptomics datasets, the expression and potential biological functions of angiotensin II receptor 1 (AGTR1), the target of angiotensin receptor blocker (ARB), were investigated. Next, the roles of ARB in tumor cells and tumor microenvironment cells were defined by a series of in vitro and in vivo assays. In addition, the clinical impacts of ARB on ICB therapy were assessed by multicenter cohorts and meta-analysis.ResultsAGTR1 was overexpressed in armored and cold tumors and associated with poor response to ICB therapy. ARB, the inhibitor for AGTR1, only suppressed the aggressiveness of tumor cells with high AGTR1 expression, which accounted for a very small proportion. Further analysis revealed that AGTR1 was always highly expressed in cancer-associated fibroblasts (CAFs) and ARB inhibited type I collagen expression in CAFs by suppressing the RhoA-YAP axis. Moreover, ARB could also drastically reverse the phenotype of armored and cold to soft and hot in vivo, leading to a higher response to ICB therapy. In addition, both our in-house cohorts and meta-analysis further supported the idea that ARB can significantly enhance ICB efficacy.ConclusionOverall, we identify AGTR1 as a novel target in armored and cold tumors and demonstrate the improved therapeutic efficacy of ICB in combination with ARB. These findings could provide novel clinical insight into how to treat patients with refractory armored and cold tumors.

Funder

High-level Innovation Team of Nanjing Medical University

National Natural Science Foundation of China

Collaborative Innovation Center for Tumor Individualization Program

Project of Wuxi Medical Center of Nanjing Medical University

Top Talent Support Program for Young and Middle-aged People of Wuxi Health Committee

Project of Jiangsu Province Health Committee

Hengrui Pharmaceutical Clinical Research Fund of Personalized Medical Collaborative Innovation Center

Publisher

BMJ

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