Xie Qinmei, Zhao Hongxia, Li Na, Su Li, Xu Xu, Hong Zhanying
Shanghai Institute of Technology, Shanghai, China.
Department of Pharmacy, Eastern Hepatobiliary Surgery Hospital, Shanghai, China.
Biomed Chromatogr. 2018 Oct;32(10):e4321. doi: 10.1002/bmc.4321. Epub 2018 Jul 4.
Peroxide and oxygen free radicals are some of the causes of oxidative stress in brain tissue, and could lead to the change of brain structure and function. In addition, oxidative damage is one of the most important causes of the aging of the vast majority of tissues. The aim of this study is to investigate the protective effect of timosaponin BII on oxidative stress damage of PC12 induced by H O using metabolomics based on the UHPLC-Q-TOF-MS technique. Partial least-squares discriminant analysis method was used to identify 35 metabolites as decisive marker compounds in a preliminary interpretation of the mechanism of the antioxidative effect of timosaponin BII. The majority of these metabolites are involved in the glutathione metabolism, amino acid metabolism, sphingolipid and glycerophospholipid metabolism. Our results suggest that timosaponin BII demonstrates systematic antioxidant effects in the PC12 oxidative damage cell model via the regulation of multiple metabolic pathways. These findings provide insight into the pathophysiological mechanisms underlying oxidative stress damage and suggest innovative and effective treatments for this disorder, providing a reliable basis for the development of novel therapeutic target in timosaponin BII treatment of oxidative stress.
过氧化物和氧自由基是脑组织氧化应激的部分成因,可能导致脑结构和功能的改变。此外,氧化损伤是绝大多数组织衰老的最重要原因之一。本研究旨在基于超高效液相色谱-四极杆-飞行时间质谱技术,采用代谢组学方法研究知母皂苷BII对过氧化氢诱导的PC12细胞氧化应激损伤的保护作用。在对知母皂苷BII抗氧化作用机制的初步阐释中,采用偏最小二乘判别分析方法鉴定出35种代谢物作为决定性标记化合物。这些代谢物大多参与谷胱甘肽代谢、氨基酸代谢、鞘脂和甘油磷脂代谢。我们的结果表明,知母皂苷BII通过调节多种代谢途径,在PC12氧化损伤细胞模型中表现出系统性抗氧化作用。这些发现深入了解了氧化应激损伤的病理生理机制,并为该疾病提出了创新有效的治疗方法,为知母皂苷BII治疗氧化应激新治疗靶点的开发提供了可靠依据。