Author:
Liu Xiaoming,Liu Mengya,Liu Huan,Yuan Hui,Wang Yong,Chen Xiaoman,Li Jianguo,Qin Xiujun
Abstract
Abstract
Background
Hydrogen-rich water (HRW) has been shown to prevent cognitive impairment caused by ionizing radiation. This study aimed to investigate the pharmacological effects and mechanisms of HRW on ionizing radiation by coupling the brain metabolomics and biological target network methods.
Methods and results
HRW significantly improves the cognitive impairment in rats exposed to ionizing radiation. Based on metabolomics and biological network results, we identified 54 differential metabolites and 93 target genes. The KEGG pathway indicates that glutathione metabolism, ascorbic acid and aldehyde acid metabolism, pentose and glucuronic acid interconversion, and glycerophospholipid metabolism play important roles in ionizing radiation therapy.
Conclusion
Our study has systematically elucidated the molecular mechanism of HRW against ionizing radiation, which can be mediated by modulating targets, pathways and metabolite levels. This provides a new perspective for identifying the underlying pharmacological mechanism of HRW.
Funder
Natural Science Foundation of Shanxi Province
Publisher
Springer Science and Business Media LLC
Subject
Cell Biology,Molecular Biology
Cited by
1 articles.
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