LTBR acts as a novel immune checkpoint of tumor‐associated macrophages for cancer immunotherapy

Author:

Wang Liang1ORCID,Fan Jieyi2,Wu Sifan1,Cheng Shilin1,Zhao Junlong1,Fan Fan1,Gao Chunchen1,Qiao Rong3,Sheng Qiqi1,Hu Yiyang1,Zhang Yong4,Liu Pengjun1,Jiao Zhe1,Wei Tiaoxia1,Lei Jie5,Chen Yan3,Qin Hongyan1ORCID

Affiliation:

1. State Key Laboratory of Holistic Integrative Management of Gastrointestinal Cancers and Department of Medical Genetics and Developmental Biology Fourth Military Medical University Xi'an China

2. Department of Aerospace Medicine Fourth Military Medical University Xi'an China

3. Department of Clinical Oncology, Xijing Hospital Fourth Military Medical University Xi'an China

4. Department of Pulmonary Medicine, Xijing Hospital Fourth Military Medical University Xi'an China

5. Department of Thoracic Surgery, Tangdu Hospital Fourth Military Medical University Xi'an China

Abstract

AbstractTumor‐associated macrophages (TAMs) greatly contribute to immune checkpoint inhibitor (ICI) resistance of cancer. However, its underlying mechanisms and whether TAMs can be promising targets to overcome ICI resistance remain to be unveiled. Through integrative analysis of immune multiomics data and single‐cell RNA‐seq data (iMOS) in lung adenocarcinoma (LUAD), lymphotoxin β receptor (LTBR) is identified as a potential immune checkpoint of TAMs, whose high expression, duplication, and low methylation are correlated with unfavorable prognosis. Immunofluorescence staining shows that the infiltration of LTBR+ TAMs is associated with LUAD stages, immunotherapy failure, and poor prognosis. Mechanistically, LTΒR maintains immunosuppressive activity and M2 phenotype of TAMs by noncanonical nuclear factor kappa B and Wnt/β‐catenin signaling pathways. Macrophage‐specific knockout of LTBR hinders tumor growth and prolongs survival time via blocking TAM immunosuppressive activity and M2 phenotype. Moreover, TAM‐targeted delivery of LTΒR small interfering RNA improves the therapeutic effect of ICI via reversing TAM‐mediated immunosuppression, such as boosting cytotoxic CD8+ T cells and inhibiting granulocytic myeloid‐derived suppressor cells infiltration. Taken together, we bring forth an immune checkpoint discovery pipeline iMOS, identify LTBR as a novel immune checkpoint of TAMs, and propose a new immunotherapy strategy by targeting LTBR+ TAMs.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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