CXCL8 induces M2 macrophage polarization and inhibits CD8+ T cell infiltration to generate an immunosuppressive microenvironment in colorectal cancer

Author:

Shao Ying123ORCID,Lan Yan24,Chai Xinyue24,Gao Shuhua4,Zheng Jinxiu34,Huang Rui34,Shi Yu34,Xiang Yi5,Guo Hongmei6,Xi Yanfeng7,Yang Lijun238,Yang Tao234ORCID

Affiliation:

1. Department of Pathophysiology Shanxi Medical University Taiyuan China

2. Key Laboratory of Cellular Physiology Shanxi Medical University, Ministry of Education Taiyuan China

3. Higher Education Key Laboratory of Tumor Immunology & Targeted Drug Development in Shanxi Province Shanxi Medical University Taiyuan China

4. Department of Biochemistry & Molecular Biology Shanxi Medical University Taiyuan China

5. Department of Orthpaedics The Logistics Support Forces of Chinese PLA 985 Hospital Taiyuan China

6. Department of Casualty Management The Logistics Support Forces of Chinese PLA 985 Hospital Taiyuan China

7. Department of Pathology Shanxi Cancer Hospital Taiyuan China

8. Department of Pharmacology Shanxi Medical University Taiyuan China

Abstract

AbstractThe poor prognosis of immunotherapy in patients with colorectal cancer (CRC) necessitates a comprehensive understanding of the immunosuppressive mechanisms within tumor microenvironment (TME). Undoubtedly, the anti‐tumor immune cells play an indispensable role in immune tolerance. Therefore, it is imperative to investigate novel immune‐related factors that have the capacity to enhance anti‐tumor immunity. Here, we employed bioinformatic analysis using R and Cytoscape to identify the hub gene chemokine (C‐X‐C motif) ligand 8 (CXCL8), which is overexpressed in CRC, in the malignant progression of CRC. However, its specific role of CXCL8 in CRC immunity remains to be elucidated. For this purpose, we evaluated how tumor‐derived CXCL8 promotes M2 macrophage infiltration by in vivo and in vitro, which can be triggered by IL‐1β within TME. Mechanistically, CXCL8‐induced polarization of M2 macrophages depends on the activation of the STAT3 signaling. Finally, immunohistochemistry and multiplexed immunohistochemistry analysis identified that CXCL8 not only enhances PD‐L1+ M2 macrophage infiltration but also attenuates the recruitment of PD‐1+CD8+ T cells in murine CRC models. Together, these findings emphasize the critical role for CXCL8 in promoting M2 macrophage polarization and inhibiting CD8+ T cell infiltration, thereby links CXCL8 to the emergency of immunosuppressive microenvironment facilitating tumor evasion. Overall, these findings may provide novel strategy for CRC immunotherapy.

Funder

Foundation for Innovative Research Groups of the National Natural Science Foundation of China

Publisher

Wiley

Subject

Genetics,Molecular Biology,Biochemistry,Biotechnology

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