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Effects of Shu Gan Jian Pi formula on rats with carbon tetrachloride-induced liver fibrosis using serum metabonomics based on gas chromatography-time of flight mass spectrometry

机译:基于飞行量谱 - 飞行质谱 - 空气色谱 - 质谱 - 质谱时血清代谢族血清代谢族血清诱导肝纤维化大鼠舒GAN JIAN PI公式的影响

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Liver fibrosis is a common stage in the majority of chronic liver diseases, regardless of the etiology, and its progression may lead to hepatic cirrhosis or hepatocellular carcinoma. Metabolomics, a powerful approach in systems biology, is a discipline used to qualitatively and quantitatively analyze the small molecule metabolites of cells at specific times and under certain conditions. The present study aimed to investigate serum metabolic changes following Shu Gan Jian Pi formula (SGJPF) treatment of carbon tetrachloride (CCl4) -induced liver fibrosis in rats using gas chromatography-time of flight mass spectrometry (GC-TOFMS). In addition, the potential mechanisms were explored. Rat liver fibrosis was induced by twice-weekly subcutaneous CCl4 injection for 12 continuous weeks. During the same period, the SGJPF group received 16.2 g/kg body weight SGJPF, diluted in water, once a day for 12 weeks. Rats in the control and model groups received oral administration of the same volume of saline solution. Serum samples from the control, model and SGJPF groups were collected after 12 weeks of treatment, and metabolic profile alterations were analyzed by GC-TOF/MS. Metabolic profile analysis indicated that clustering differed between the three groups and the following 12 metabolites were detected in the serum of all three groups: Isoleucine; L-malic acid; D-erythro-sphingosine; putrescine; malonic acid; 3,6-anhydro-D-galactose, a-ketoglutaric acid; ornithine; glucose; hippuric acid; tetrahydrocorticosterone; and fucose. The results demonstrated that SGJPF treatment mitigated the effects of CCl4-induced liver fibrosis on biomarker levels, thus indicating that SGJPF may have a therapeutic effect on CCl4-induced liver fibrosis in rats. The mechanism may involve the regulation of energy, amino acid, sphingolipid, cytochrome P450, glucose and water-electrolyte metabolism.
机译:肝纤维化是大多数慢性肝病的常见阶段,无论病因如何,其进展可能导致肝硬化或肝细胞癌。代谢组织是系统生物学的强大方法,是用于定性和定量分析特定时间细胞的小分子代谢物的学科,并在某些条件下进行定量分析细胞的小分子代谢物。本研究旨在探讨舒GAI型PI公式(SGJPF)处理四氯化碳(CCL4)的血清代谢变化,所述四氯化碳(CCL4)诱导的大鼠肝纤维化,所述大鼠使用飞行量谱法(GC-TOFMS)。此外,探讨了潜在的机制。通过两次皮下CCl4注射诱导大鼠肝纤维化12连续周。在同一时期,SGJPF组接受16.2g / kg体重Sgjpf,在水中稀释,每天稀释12周。对照和模型组中的大鼠接受了相同体积的盐溶液的口服给药。在治疗12周后收集来自对照,模型和SGJPF组的血清样本,通过GC-TOF / MS分析代谢型材改变。代谢谱分析表明,在所有三组的血清中检测到三组和以下12种代谢物之间的聚类不同的聚类; L-苹果酸; D-红细胞上磷酸盐; putrestine;丙酸; 3,6- Anhydro-D-半乳糖,A-酮戊酸;鸟氨酸;葡萄糖;海皮酸;四氢皮质酮;和粘膜。结果表明,SGJPF治疗减轻了CCL4诱导的肝纤维化对生物标志物水平的影响,从而表明SGJPF可能对大鼠CCL4诱导的肝纤维化具有治疗作用。该机构可以包括能量,氨基酸,神经鞘脂类,细胞色素P450,葡萄糖和水电解质代谢的调节。

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