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자료유형
학술저널
저자정보
Xiang Yaoxian (Huashan Hospital) Dai Junxi (Huashan Hospital) Li Yao (Shanghai Advanced Research Institute) You Zongqi (Huashan Hospital) Zhang Junpeng (Shanghai University of Traditional Chinese Medicine) Huang Xinying (Huashan Hospital) Nie Shuqi (Shanghai Medical College of Fudan University) Chen Yujie (Huashan Hospital) Xu Lei (Huashan Hospital) Liu Fengming (Shanghai Advanced Research Institute) Jiang Junjian (Huashan Hospital) Xu Jianguang (Huashan Hospital)
저널정보
대한생화학·분자생물학회 Experimental and Molecular Medicine Experimental and Molecular Medicine 제54권
발행연도
2022.7
수록면
1 - 13 (13page)
DOI
10.1038/s12276-022-00805-0

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Neutrophils are the earliest master inflammatory regulator cells recruited to target tissues after direct infection or injury. Although inflammatory factors are present in muscle that has been indirectly disturbed by peripheral nerve injury, whether neutrophils are present and play a role in the associated inflammatory process remains unclear. Here, intravital imaging analysis using spinning-disk confocal intravital microscopy was employed to dynamically identify neutrophils in denervated muscle. Slice digital scanning and 3D-view reconstruction analyses demonstrated that neutrophils escape from vessels and migrate into denervated muscle tissue. Analyses using reactive oxygen species (ROS) inhibitors and flow cytometry demonstrated that enhanced ROS activate neutrophils after denervation. Transcriptome analysis revealed that the vast majority of neutrophils in denervated muscle were of the CXCR2 subtype and were recruited by CXCL1. Most of these cells gradually disappeared within 1 week via P53-mediated apoptosis. Experiments using specific blockers confirmed that neutrophils slow the process of denervated muscle atrophy. Collectively, these results indicate that activated neutrophils are recruited via chemotaxis to muscle tissue that has been indirectly damaged by denervation, where they function in delaying atrophy.

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