中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
HgS Inhibits Oxidative Stress Caused by Hypoxia through Regulation of 5-HT Metabolism Pathway

文献类型:期刊论文

作者He, Qiangqiang; Ma, Ji; Kalavagunta, Praveen Kumar; Zhou, Liangliang; Zhu, Junyi; Dong, Jing; Ahmad, Owais; Du, Yuzhi; Wei, Lixin; Shang, Jing
刊名INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES
出版日期2019
卷号20期号:6
关键词hypoxia reactive oxygen species oxidative stress 5-Hydroxytryptamine cinnabar
英文摘要This study aims to reveal the potential relationship between 5-HT and oxidative stress in the organism. Our in vitro experiments in RIN-14B cells showed that anoxia leads the cells to the state of oxidative stress. Administration of exogenous 5-HT exacerbated this effect, whereas the inhibition of Tph1, LP533401 alleviated the oxidative stress. Several research articles reported that Cinnabar (consists of more than 96% mercury sulfide, HgS), which is widely used in both Chinese and Indian traditional medicine prescriptions, has been involved in the regulation of 5-HT. The present research revealed that HgS relieved the level of oxidative stress of RIN-14B cells. This pharmacological activity was also observed in the prescription drug Zuotai, in which HgS accounts for 54.5%, and these effects were found to be similar to LP533401, an experimental drug to treat pulmonary hypertension. Further, our in vivo experiments revealed that the administration of cinnabar or prescription drug Zuotai in zebrafish reduced the reactive oxygen species (ROS) induced by hypoxia and cured behavioral abnormalities. Taken together, in organisms with hypoxia induced oxidative stress 5-HT levels were found to be abnormally elevated, indicating that 5-HT could regulate oxidative stress, and the decrease in the 5-HT levels, behavioral abnormalities after treatment with cinnabar and Zuotai, we may conclude that the therapeutic and pharmacologic effect of cinnabar and Zuotai may be based on the regulation of 5-HT metabolism and relief of oxidative stress. Even though they aren't toxic at the present dosage in both cell lines and zebrafish, their dose dependent toxicities are yet to be evaluated.
源URL[http://210.75.249.4/handle/363003/59832]  
专题西北高原生物研究所_中国科学院西北高原生物研究所
推荐引用方式
GB/T 7714
He, Qiangqiang,Ma, Ji,Kalavagunta, Praveen Kumar,et al. HgS Inhibits Oxidative Stress Caused by Hypoxia through Regulation of 5-HT Metabolism Pathway[J]. INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES,2019,20(6).
APA He, Qiangqiang.,Ma, Ji.,Kalavagunta, Praveen Kumar.,Zhou, Liangliang.,Zhu, Junyi.,...&Shang, Jing.(2019).HgS Inhibits Oxidative Stress Caused by Hypoxia through Regulation of 5-HT Metabolism Pathway.INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES,20(6).
MLA He, Qiangqiang,et al."HgS Inhibits Oxidative Stress Caused by Hypoxia through Regulation of 5-HT Metabolism Pathway".INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES 20.6(2019).

入库方式: OAI收割

来源:西北高原生物研究所

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