4.3 Article

CXCR2 Is Essential for Radiation-Induced Intestinal Injury by Initiating Neutrophil Infiltration

Journal

JOURNAL OF IMMUNOLOGY RESEARCH
Volume 2022, Issue -, Pages -

Publisher

HINDAWI LTD
DOI: 10.1155/2022/7966089

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Funding

  1. Institute of Oncology, Affiliated Hospital of Jiangsu University
  2. National Natural Science Foundation of China [32170910]
  3. Natural Science Foundation of Jiangsu Province [BK20211124]
  4. Zhenjiang Key Research and Development Program [SH2021037]

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Neutrophils play a critical role in radiation-induced intestinal injury, with migration mediated by the CXCR2 receptor. Inhibiting the CXCR2 signaling pathway effectively suppresses neutrophil chemotaxis and tissue damage.
Neutrophils, known as an important part of the immune system, are the most abundant leukocyte population in peripheral blood, but excessive recruitment will lead to tissue/organ injury. RNA sequencing showed that ionizing radiation significantly increased the expression of characteristic genes of neutrophils in intestinal tissues compared with liver and lung tissues. By clearing neutrophils with an anti-Ly6G antibody, we found that neutrophil infiltration is critical for irradiation-induced intestinal injury. CXCR2 is a G-protein-coupled receptor that mediates the migration of neutrophils by combining with its ligands. Compared with observations in liver and lung tissues, we found that CXCR2 and its ligands, including CXCL1, CXCL2, CXCL3, and CXCL5, were all significantly upregulated in irradiated intestinal tissues. Further studies showed that SB225002, an inhibitor of CXCR2, could effectively inhibit the chemotaxis of neutrophils and tissue damage mediated by the CXCL-CXCR2 signalling pathway.

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