Identification of Hypoxia‐ALCAMhigh Macrophage‐ Exhausted T Cell Axis in Tumor Microenvironment Remodeling for Immunotherapy Resistance

Author:

Xun Zhenzhen12,Zhou Huanran3,Shen Mingyi12,Liu Yao4,Sun Chengcao5,Du Yanhua1,Jiang Zhou5,Yang Liuqing5,Zhang Qing6,Lin Chunru5,Hu Qingsong4,Ye Youqiong12,Han Leng789ORCID

Affiliation:

1. Center for Immune‐Related Diseases at Shanghai Institute of Immunology Department of Gastroenterology Ruijin Hospital Shanghai Jiao Tong University School of Medicine Shanghai 200025 China

2. Shanghai Institute of Immunology State Key Laboratory of Systems Medicine for Cancer Department of Immunology and Microbiology Shanghai Jiao Tong University School of Medicine Shanghai 200025 China

3. Department of Endocrinology The First Affiliated Hospital of USTC Division of Life Sciences and Medicine University of Science and Technology of China Hefei Anhui 230001 China

4. Department of Hepatobiliary Surgery Centre for Leading Medicine and Advanced Technologies of IHM The First Affiliated Hospital of USTC Division of Life Sciences and Medicine University of Science and Technology of China Hefei 230001 China

5. Department of Molecular and Cellular Oncology The University of Texas MD Anderson Cancer Center Houston TX 77030 USA

6. Simmons Comprehensive Cancer Center Department of Pathology University of Texas Southwestern Medical Center Dallas TX 75390 USA

7. Brown Center for Immunotherapy School of Medicine Indiana University Indianapolis IN 46202 USA

8. Department of Biostatistics and Health Data Science School of Medicine Indiana University Indianapolis IN 46202 USA

9. Department of Biochemistry and Molecular Biology McGovern Medical School at The University of Texas Health Science Center at Houston Houston TX 77030 USA

Abstract

AbstractAlthough hypoxia is known to be associated with immune resistance, the adaptability to hypoxia by different cell populations in the tumor microenvironment and the underlying mechanisms remain elusive. This knowledge gap has hindered the development of therapeutic strategies to overcome tumor immune resistance induced by hypoxia. Here, bulk, single‐cell, and spatial transcriptomics are integrated to characterize hypoxia associated with immune escape during carcinogenesis and reveal a hypoxia‐based intercellular communication hub consisting of malignant cells, ALCAMhigh macrophages, and exhausted CD8+ T cells around the tumor boundary. A hypoxic microenvironment promotes binding of HIF‐1α complex is demonstrated to the ALCAM promoter therefore increasing its expression in macrophages, and the ALCAMhigh macrophages co‐localize with exhausted CD8+ T cells in the tumor spatial microenvironment and promote T cell exhaustion. Preclinically, HIF‐1ɑ inhibition reduces ALCAM expression in macrophages and exhausted CD8+ T cells and potentiates T cell antitumor function to enhance immunotherapy efficacy. This study reveals the systematic landscape of hypoxia at single‐cell resolution and spatial architecture and highlights the effect of hypoxia on immunotherapy resistance through the ALCAMhigh macrophage‐exhausted T cell axis, providing a novel immunotherapeutic strategy to overcome hypoxia‐induced resistance in cancers.

Funder

National Key Research and Development Program of China

National Natural Science Foundation of China

Natural Science Foundation of Anhui Province

China Postdoctoral Science Foundation

Publisher

Wiley

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