Ma Xiaochi
Dalian Medical University
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Featured researches published by Ma Xiaochi.
Critical Care Medicine | 2014
Hu Yan; Yao Jihong; Zhang Feng; Xu Xiaomei; Zhai Xiaohan; Wang Guangzhi; Ma Zhenhai; Gao Dongyan; Ma Xiaochi; Fan Qing; Liu Kexin; Tian Xiaofeng
Objectives:Ischemia/reperfusion is a leading cause of liver damage after surgical intervention, trauma, and transplantation. It has been reported that the nicotinamide adenine dinucleotide–dependent deacetylase sirtuin 1 attenuates myocardial, cerebral, and renal ischemia/reperfusion damage. This study aimed to investigate the involvement of sirtuin 1-mediated p66shc inhibition in liver ischemia/reperfusion and explore the effect of carnosic acid and ischemic preconditioning on liver ischemia/reperfusion-induced damage. Design:Laboratory investigation. Setting:University laboratory. Subjects:Male Sprague-Dawley rats and HepG2 cells. Interventions:The rats were subjected to 45 minutes of ischemia to 70% of the liver, followed by 3-hour reperfusion. The HepG2 cells were subjected to hypoxia/reoxygenation-induced injury. Measurements and Main Results:In the rats with liver ischemia/reperfusion injury, carnosic acid pretreatment and ischemic preconditioning dramatically reduced the serum aminotransferase activity and proinflammatory chemokine levels and improved the liver histological evaluations. Carnosic acid and ischemic preconditioning also increased manganese superoxide dismutase and Bcl-xL, but down-regulated cleaved caspase-3. Interestingly, the protective effect of carnosic acid and ischemic preconditioning was positively associated with sirtuin 1 activation. By contrast, p66shc, a kinase that promotes oxidative injury and apoptosis, was inhibited by carnosic acid and ischemic preconditioning. Sirtuin 1 small interfering RNA knockdown experiments confirmed that carnosic acid increased sirtuin 1-mediated repression of p66shc in HepG2 cells and that the protective effect of carnosic acid against hypoxia/reoxygenation injury was inhibited by the sirtuin 1 inhibitor nicotinamide. These results suggest that carnosic acid protects hepatocytes from hypoxia/reoxygenation damage through sirtuin 1-mediated p66shc suppression. To support this notion, we further demonstrated that the sirtuin 1 activator resveratrol achieved a protective effect similar to that of carnosic acid against hypoxia/reoxygenation injury, whereas sirtuin 1 small interfering RNA and nicotinamide had the opposite effect. Conclusions:Carnosic acid and ischemic preconditioning protect against ischemia/reperfusion-induced liver injury. Mechanistically, the protective effect involves the sirtuin 1-mediated inhibition of p66shc, suggesting that this pathway is a novel potential therapeutic target for protecting the liver from ischemia/reperfusion injury.
Natural Product Communications | 2009
Ma Xiaochi; Zhang Baojing; Xin XiuLan; Huang ShanShan; Deng Sha; Zhang HouLi; Shu XiaoHong; Diao YunPeng; Cui Jian
Archive | 2017
Wang Chao; Ma Xiaochi; Ma Yufang; Huo Xiaokui; Yan Qiulong; Tian Xiangge
Archive | 2014
Ma Xiaochi; Zhan Libin; Huo Xiaokui; Wang Chao; Wang Changyuan; Zhang Baojing; Huang Shanshan; Tian Xiangge; Jiang Li; Deng Sa
Phytochemistry Letters | 2017
Huang Shanshan; Li Ping; Zhang Baojing; Deng Sa; Zhang Hou-li; Sun Cheng-Peng; Huo Xiaokui; Tian Xiangge; Ma Xiaochi; Wang Chao
Phytochemistry Letters | 2017
Cang Jian; Wang Chao; Huo Xiaokui; Tian Xiangge; Sun Cheng-Peng; Deng Sa; Zhang Baojing; Zhang Hou-li; Liu Kexin; Ma Xiaochi
Catalysis Communications | 2017
Wang Chao; Huo Xiaokui; Zhang Baojing; Sun Cheng-Peng; Tian Xiangge; Deng Sa; Li Bin; Wang Wei; Dong Pei-Pei; Ma Xiaochi
Zhongyaocai | 2016
Tang Xiaoguang; Wang Chao; Ma Xiaochi; Zhang Hou-li; Huo Xiaokui; Zhang Baojing; Zhong Ming
Phytochemistry Letters | 2016
Zhao Xi-Run; Zhang Baojing; Deng Sa; Zhang Hou-li; Huang Shanshan; Huo Xiaokui; Wang Chao; Liu Fang; Ma Xiaochi
Archive | 2016
Ma Xiaochi; Yu Zhenlong; Wang Chao; Tang Ning; Zhang Baojing; Huang Shanshan; Deng Sa