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首页> 外文期刊>Polymers >Therapeutic Effect and Metabolic Mechanism of A Selenium-Polysaccharide from Ziyang Green Tea on Chronic Fatigue Syndrome
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Therapeutic Effect and Metabolic Mechanism of A Selenium-Polysaccharide from Ziyang Green Tea on Chronic Fatigue Syndrome

机译:紫阳绿茶中硒多糖对慢性疲劳综合症的治疗作用及其代谢机制

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Ziyang green tea was considered a medicine food homology plant to improve chronic fatigue Ssyndrome (CFS) in China. The aim of this research was to study the therapeutic effect of selenium-polysaccharides (Se-TP) from Ziyang green tea on CFS and explore its metabolic mechanism. A CFS-rats model was established in the present research and Se-TP was administrated to evaluate the therapeutic effect on CFS. Some serum metabolites including blood urea nitrogen (BUN), blood lactate acid (BLA), corticosterone (CORT), and aldosterone (ALD) were checked. Urine metabolites were analyzed via gas chromatography-mass spectrometry (GC-MS). Multivariate statistical analysis was also used to check the data. The results selected biomarkers that were entered into the MetPA database to analyze their corresponding metabolic pathways. The results demonstrated that Se-TP markedly improved the level of BUN and CORT in CFS rats. A total of eight differential metabolites were detected in GC-MS analysis, which were benzoic acid, itaconic acid, glutaric acid, 4-acetamidobutyric acid, creatine, 2-hydroxy-3-isopropylbutanedioic acid, l-dopa, and 21-hydroxypregnenolone. These differential metabolites were entered into the MetPA database to search for the corresponding metabolic pathways and three related metabolic pathways were screened out. The first pathway was steroid hormone biosynthesis. The second was tyrosine metabolism, and the third was arginine-proline metabolism. The 21-hydroxypregnenolone level of rats in the CFS group markedly increased after the Se-TP administration. In conclusion, Se-TP treatments on CFS rats improved their condition. Its metabolic mechanism was closely related to that which regulates the steroid hormone biosynthesis.
机译:资阳绿茶被认为是中国改善慢性疲劳综合症(CFS)的药用食品同源植物。本研究的目的是研究紫阳绿茶中的硒多糖对CFS的治疗作用,并探讨其代谢机理。本研究建立了CFS-大鼠模型,并使用Se-TP评估了对CFS的治疗效果。检查了一些血清代谢物,包括血尿素氮(BUN),血乳酸(BLA),皮质酮(CORT)和醛固酮(ALD)。尿液代谢物通过气相色谱-质谱法(GC-MS)进行分析。还使用多元统计分析来检查数据。结果选择了进入MetPA数据库的生物标志物,以分析其相应的代谢途径。结果表明,Se-TP明显改善了CFS大鼠的BUN和CORT水平。在GC-MS分析中总共检测到八种不同的代谢物,分别是苯甲酸,衣康酸,戊二酸,4-乙酰氨基丁酸,肌酸,2-羟基-3-异丙基丁二酸,1-多巴和21-羟基孕烯醇酮。将这些差异代谢物输入MetPA数据库以搜索相应的代谢途径,并筛选出三种相关的代谢途径。第一条途径是类固醇激素的生物合成。第二个是酪氨酸代谢,第三个是精氨酸-脯氨酸代谢。给予Se-TP后,CFS组大鼠的21-羟基孕烯醇酮水平明显升高。总之,对CFS大鼠进行Se-TP治疗可改善其状况。它的代谢机制与调节类固醇激素生物合成密切相关。

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