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Effect of Dl-3-n-butylphthalide on mitochondrial Cox7c in models of cerebral ischemia/reperfusion injury

Affiliation
Department of Neurology ,Peking University First Hospital ,Beijing ,China
Jia, Jingjing;
Affiliation
Department of Neurology ,Peking University First Hospital ,Beijing ,China
Deng, Jianwen;
Affiliation
Department of Neurology ,Peking University First Hospital ,Beijing ,China
Jin, Haiqiang;
Affiliation
Leewe Biopharmaceutical Co., Ltd ,Xianlin University ,Nanjing ,China
Yang, Jie;
Affiliation
Department of Neurology ,Peking University First Hospital ,Beijing ,China
Nan, Ding;
Affiliation
Department of Neurology ,Peking University First Hospital ,Beijing ,China
Yu, Zemou;
Affiliation
Department of Neurology ,Peking University First Hospital ,Beijing ,China
Yu, Weiwei;
Affiliation
Department of Neurology ,Peking University First Hospital ,Beijing ,China
Shen, Zhiyuan;
Affiliation
Department of Neurology ,Peking University First Hospital ,Beijing ,China
Lu, Yuxuan;
Affiliation
Department of Neurology ,Peking University First Hospital ,Beijing ,China
Liu, Ran;
Affiliation
Department of Neurology ,Peking University First Hospital ,Beijing ,China
Wang, Zhaoxia;
Affiliation
Center of Materials Science and Optoelectronics Engineering ,College of Materials Science and Opto-Electronic Technology ,University of Chinese Academy of Sciences ,Beijing ,China
Qu, Xiaozhong;
Affiliation
Beijing National Laboratory for Molecular Sciences (BNLMS) ,Laboratory of Polymer Physics and Chemistry ,CAS Research/Education Center for Excellence in Molecular Sciences ,Institute of Chemistry ,Chinese Academy of Sciences ,Beijing ,China
Qiu, Dong;
Affiliation
Institute of Polymer Science and Engineering ,Department of Chemical Engineering ,Tsinghua University ,Beijing ,China
Yang, Zhenzhong;
Affiliation
Department of Neurology ,Peking University First Hospital ,Beijing ,China
Huang, Yining

Several studies have demonstrated the protective effect of dl-3-n-Butylphthalide (NBP) against cerebral ischemia, which may be related to the attenuation of mitochondrial dysfunction. However, the specific mechanism and targets of NBP in cerebral ischemia/reperfusion remains unclear. In this study, we used a chemical proteomics approach to search for targets of NBP and identified cytochrome C oxidase 7c (Cox7c) as a key interacting target of NBP. Our findings indicated that NBP inhibits mitochondrial apoptosis and reactive oxygen species (ROS) release and increases ATP production through upregulation of Cox7c. Subsequently, mitochondrial respiratory capacity was improved and the HIF-1α/VEGF pathway was upregulated, which contributed to the maintenance of mitochondrial membrane potential and blood brain barrier integrity and promoting angiogenesis. Therefore, our findings provided a novel insight into the mechanisms underlying the neuroprotective effects of NBP, and also proposed for the first time that Cox7c exerts a critical role by protecting mitochondrial function.

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License Holder: Copyright © 2023 Jia, Deng, Jin, Yang, Nan, Yu, Yu, Shen, Lu, Liu, Wang, Qu, Qiu, Yang and Huang.

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