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首页> 外文期刊>RSC Advances >Rapid lipidomics analysis for sepsis-induced liver injury in rats and insights into lipid metabolic pathways using ultra-performance liquid chromatography/mass spectrometry
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Rapid lipidomics analysis for sepsis-induced liver injury in rats and insights into lipid metabolic pathways using ultra-performance liquid chromatography/mass spectrometry

机译:使用超高效液相色谱/质谱法对大鼠脓毒症诱导的大鼠肝损伤的快速脂质分析及脂质代谢途径

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Lipidomics has been applied in the identification and quantification of molecular lipids within an organism, and to provide insights into mechanisms in clinical medicine. Sepsis is a major systemic inflammatory syndrome and the liver here is a potential target organ for dysfunctional response. However, the study of alterations in global lipid profiles associated with sepsis-induced liver injury is still limited. In this work, we set out to determine alterations of lipidomics profiles in a rat model of sepsis-induced liver injury using an untargeted lipidomics strategy. Liquid chromatography coupled with mass spectrometry in conjunction with multivariate data analysis and pathway analysis were used to acquire a global lipid metabolite profile. Meanwhile, biochemistry index and histopathological examinations of the liver were performed to obtain auxiliary measurements for determining the pathological changes associated with sepsis-induced liver injury. Eleven lipid metabolites and two metabolic pathways were discovered and associated with sepsis-induced liver injury. The results indicated that various biomarkers and pathways may provide evidence for and insight into lipid profile alterations associated with sepsis-induced liver injury, and hence pointed to potential strategic targets for clinical diagnosis and therapy in the future.
机译:已在生物体内鉴定和定量分子脂质的鉴定和定量,并在临床医学中提供洞察力。脓毒症是一种主要的全身炎症综合征,这里肝脏是一种功能失调反应的潜在目标器官。然而,与败血症诱导的肝损伤相关的全局脂质谱的改变的研究仍然有限。在这项工作中,我们首先使用未标准化的脂质族策略确定败血症诱导的肝损伤大鼠模型中脂质谱系谱的改变。液相色谱与质谱结合结合多元数据分析和途径分析,用于获取全球脂质代谢物型材。同时,进行肝脏的生物化学指数和组织病理学检查,以获得用于确定与败血症诱导的肝损伤相关的病理变化的辅助测量。发现11种脂质代谢物和两种代谢途径,并与败血症诱导的肝损伤相关。结果表明,各种生物标志物和途径可以向败血症诱导的肝损伤相关的脂质型材改变提供证据,并因此指出了未来临床诊断和治疗的潜在战略目标。

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    《RSC Advances 》 |2019年第61期| 共8页
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  • 正文语种 eng
  • 中图分类 化学 ;
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