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首页> 外文期刊>RSC Advances >Metabolomics-driven identification of perturbations in amino acid and sphingolipid metabolism as therapeutic targets in a rat model of anorexia nervosa disease using chemometric analysis and a multivariate analysis platform
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Metabolomics-driven identification of perturbations in amino acid and sphingolipid metabolism as therapeutic targets in a rat model of anorexia nervosa disease using chemometric analysis and a multivariate analysis platform

机译:使用化学计量分析和多变量分析平台,氨基酸和鞘磷脂代谢作为治疗靶标的代谢组织驱动鉴定氨基酸和鞘脂代谢的鉴定

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摘要

It is important to explore novel therapeutic targets and develop an effective strategy for the treatment of anorexia nervosa. In this work, serum samples were analyzed using ultra-performance liquid chromatography coupled with quadrupole time-of flight mass spectrometry (UPLC/Q-TOF MS) coupled with chemometric analysis and multivariate analysis to obtain the metabolites and their corresponding pathways. In addition, knock-in and knock-down of the key enzyme in vivo was performed to verify the reliability of the obtained metabolic pathway, which is closely associated with the anorexia nervosa pathomechanism and the potential targets. There were significant differences in the biochemical parameters between the model group and the control group. A total of 26 potential biomarkers were identified to resolve the difference between the control and model rats, which were closely related to amino acid metabolism, sphingolipid metabolism, arachidonic acid metabolism, the citrate cycle, and so forth. According to the ingenuity pathway analysis, we further elucidated the relationship between the gene, protein, and metabolite alteration in anorexia nervosa, which are involved in cellular compromise, lipid metabolism, small molecule biochemistry, cell signaling, molecular transport, nucleic acid metabolism, cell morphology, cellular function and maintenance. Arginosuccinate synthetase (ASS) deficiency was accompanied by a significant downregulation of the β-endorphin and ghrelin in the animal models. The metabolites and pathways obtained using the metabolomics strategy may provide valuable information for the early treatment for anorexia nervosa.
机译:重要的是探索新的治疗目标,并对治疗厌食症进行治疗的有效策略。在这项工作中,使用与高轴飞行时间质谱(UPLC / Q-TOF MS)偶联的超级性能液相色谱法分析血清样品,与化学计量分析和多变量分析,以获得代谢物及其相应的途径。此外,进行体内关键酶的敲入和敲击以验证所获得的代谢途径的可靠性,这与厌食神经发电机制和潜在目标密切相关。模型组和对照组之间的生化参数存在显着差异。鉴定了26种潜在的生物标志物以解决对照和模型大鼠之间的差异,其与氨基酸代谢,鞘脂代谢,花生素代谢,柠檬酸盐循环等密切相关。根据熟智能途径分析,我们进一步阐明了厌食症神经系统的基因,蛋白质和代谢物改变之间的关系,这参与了细胞折衷,脂质代谢,小分子生物化学,细胞信号传导,分子传输,核酸代谢,细胞形态学,蜂窝功能和维护。氨基琥珀酸合成酶(ASS)缺乏伴随着动物模型中β-内啡肽和Ghrelin的显着下调。使用代谢组科策略获得的代谢物和途径可以为厌食症的早期治疗提供有价值的信息。

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