Celecoxib attenuates hindlimb unloading-induced muscle atrophy via suppressing inflammation, oxidative stress and ER stress by inhibiting STAT3

被引:0
|
作者
Yanan Ji
Junfei Lin
Ruiqi Liu
Kexin Wang
Mengyuan Chang
Zihui Gao
Boya Liu
Yuntian Shen
Jianwei Zhu
Xinlei Yao
Lei Qi
Hualin Sun
机构
[1] Medical School of Nantong University,Key Laboratory of Neuroregeneration of Jiangsu and Ministry of Education, Co
[2] Nantong University,Innovation Center of Neuroregeneration, NMPA Key Laboratory for Research and Evaluation of Tissue Engineering Technology Products
[3] Affiliated Hospital of Nantong University,Department of Orthopedics
[4] Medical College,Department of Clinical Medicine
[5] Nantong University,Department of Emergency Medicine
[6] Affiliated Hospital of Nantong University,undefined
来源
Inflammopharmacology | 2024年 / 32卷
关键词
Muscle atrophy; Hindlimb unloading; Celecoxib; Inflammation; Proteolysis;
D O I
暂无
中图分类号
学科分类号
摘要
Improving inflammation may serve as useful therapeutic interventions for the hindlimb unloading-induced disuse muscle atrophy. Celecoxib is a selective non-steroidal anti-inflammatory drug. We aimed to determine the role and mechanism of celecoxib in hindlimb unloading-induced disuse muscle atrophy. Celecoxib significantly attenuated the decrease in soleus muscle mass, hindlimb muscle function and the shift from slow- to fast-twitch muscle fibers caused by hindlimb unloading in rats. Importantly, celecoxib inhibited the increased expression of inflammatory factors, macrophage infiltration in damaged soleus muscle. Mechanistically, Celecoxib could significantly reduce oxidative stress and endoplasmic reticulum stress in soleus muscle of unloaded rats. Furthermore, celecoxib inhibited muscle proteolysis by reducing the levels of MAFbx, MuRF1, and autophagy related proteins maybe by inhibiting the activation of pro-inflammatory STAT3 pathway in vivo and in vitro. This study is the first to demonstrate that celecoxib can attenuate disuse muscle atrophy caused by hindlimb unloading via suppressing inflammation, oxidative stress and endoplasmic reticulum stress probably, improving target muscle function and reversing the shift of muscle fiber types by inhibiting STAT3 pathways-mediated inflammatory cascade. This study not only enriches the potential molecular regulatory mechanisms, but also provides new potential therapeutic targets for disuse muscle atrophy.
引用
收藏
页码:1633 / 1646
页数:13
相关论文
共 50 条
  • [31] Hydroxysafflor Yellow A Regulates Inflammation and Oxidative Stress by Suppressing the HIF-1α/JAK/STAT3 Signaling Pathway to Attenuate Osteoarthritis
    Ju, Shaohua
    Liu, Panwang
    Tan, Lirong
    Tan, Youli
    Li, Xiaohong
    He, Benxiang
    Xia, Yu
    Wang, Mingjian
    REVISTA BRASILEIRA DE FARMACOGNOSIA-BRAZILIAN JOURNAL OF PHARMACOGNOSY, 2023, 33 (05): : 1022 - 1030
  • [32] Hydroxysafflor Yellow A Regulates Inflammation and Oxidative Stress by Suppressing the HIF-1α/JAK/STAT3 Signaling Pathway to Attenuate Osteoarthritis
    Shaohua Ju
    Panwang Liu
    Lirong Tan
    Youli Tan
    Xiaohong Li
    Benxiang He
    Yu Xia
    Mingjian Wang
    Revista Brasileira de Farmacognosia, 2023, 33 : 1022 - 1030
  • [33] Celecoxib prevents pressure overload-induced cardiac hypertrophy and dysfunction by inhibiting inflammation, apoptosis and oxidative stress
    Zhang, Chi
    Wang, Fan
    Zhang, Yingxia
    Kang, Yimin
    Wang, Haisheng
    Si, Mingming
    Su, Liping
    Xin, Xue
    Xue, Feng
    Hao, Fei
    Yu, Lechu
    Xu, Jinzhong
    Liu, Yanlong
    Xue, Mingming
    JOURNAL OF CELLULAR AND MOLECULAR MEDICINE, 2016, 20 (01) : 116 - 127
  • [34] Vitamin D3 attenuates lipopolysaccharide-induced cognitive impairment in rats by inhibiting inflammation and oxidative stress
    Mokhtari-Zaer, Amin
    Hosseini, Mahmoud
    Salmani, Hossein
    Arab, Zohreh
    Zareian, Parvin
    LIFE SCIENCES, 2020, 253
  • [35] Isoliquiritigenin attenuates acute renal injury through suppressing oxidative stress, fibrosis and JAK2/STAT3 pathway in streptozotocin-induced diabetic rats
    Sun, Leiming
    Yang, Zheng
    Zhang, Jiaying
    Wang, Jie
    BIOENGINEERED, 2021, 12 (02) : 11188 - 11200
  • [36] Umbelliferone attenuates cisplatin-induced acute kidney injury by inhibiting oxidative stress and inflammation via NRF2
    Yang, Zhenle
    Ning, Ruofei
    Liu, Qianying
    Zang, Ruixian
    Liu, Suwen
    Sun, Shuzhen
    PHYSIOLOGICAL REPORTS, 2023, 11 (23):
  • [37] RP105 Attenuates Ischemia/Reperfusion-Induced Oxidative Stress in the Myocardium via Activation of the Lyn/Syk/STAT3 Signaling Pathway
    Yang, Jian
    Zhai, Yuhong
    Huang, Cuiyuan
    Xiang, Zujin
    Liu, Haiyin
    Wu, Jingyi
    Huang, Yifan
    Liu, Li
    Li, Wenqiang
    Wang, Wei
    Yang, Jun
    Zhang, Jing
    INFLAMMATION, 2024, 47 (04) : 1371 - 1385
  • [38] STAT3 Promotes Schistosome-Induced Liver Injury by Inflammation, Oxidative Stress, Proliferation, and Apoptosis Signal Pathway
    Zhao, Jie
    Liu, Xin
    Chen, Yao
    Zhang, Lin-Shuang
    Zhang, Ya-Rong
    Ji, Deng-Ren
    Liu, Shi-Meng
    Jia, Mo-Zhi
    Zhu, Yong-Hong
    Qi, Yong-Fen
    Lu, Feng-Min
    Yu, Yan-Rong
    INFECTION AND IMMUNITY, 2021, 89 (03)
  • [39] Interleukin(IL)-37 attenuates isoproterenol (ISO)-induced cardiac hypertrophy by suppressing JAK2/STAT3-signaling associated inflammation and oxidative stress
    Guo, Xiaohua
    Wang, Pengfei
    Wei, Huiqing
    Yan, Jie
    Zhang, Donglei
    Qian, Yuxing
    Guo, Bingyan
    INTERNATIONAL IMMUNOPHARMACOLOGY, 2024, 142
  • [40] SKP-SC-EVs Mitigate Denervated Muscle Atrophy by Inhibiting Oxidative Stress and Inflammation and Improving Microcirculation
    Wang, Wei
    Shen, Dingding
    Zhang, Lilei
    Ji, Yanan
    Xu, Lai
    Chen, Zehao
    Shen, Yuntian
    Gong, Leilei
    Zhang, Qi
    Shen, Mi
    Gu, Xiaosong
    Sun, Hualin
    ANTIOXIDANTS, 2022, 11 (01)