The Antidiabetic Effect and Mechanism of JinXiaoXiaoKe Decoction in Type 2 Diabetic Goto–Kakizaki Rats

Miao Lin , Lei Wang , Lihua Wan , Jiadong Xu , Yu Li , Lingyong Cao , Shuyuan Lin
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引用次数: 1

Abstract

Background

Modern research and clinical practice have proved that Traditional Chinese Medicine (TCM) has unique advantages in the treatment of diabetes. JinXiaoXiaoKe decoction (JXXKD) is a prescription for treating diabetes used in ancient China and still has a good clinical effect today. However, the mechanism of JXXKD against T2DM is unclear.

Objective

The purpose of this study is to screen the targets through network pharmacology, and to explore the therapeutic effect and mechanism of JXXKD on diabetic rats.

Methods

The JXXKD's active components, related targets and T2DM targets were obtained from the public database, and Venny 2.1 was used to determine the common targets of JXXKD in the treatment of T2DM, and PPI, GO and KEGG analysis were performed. The core components and targets are verified by molecular docking. The diabetic Goto–Kakizaki rat model was established by high-sugar and high-fat diet, Wistar rats were used as a blank control group. The diabetic rats were randomized into three groups and administered saline (MO), metformin (MET), or JXXKD once a day for 4 weeks. Fasting blood glucose (FBG), Fasting serum insulin (FINS), and HOMA-IR were detected, hematoxylin-eosin (HE) staining was used to observe the pathological changes of liver tissue; and qPCR was used to detect the expression of relevant genes screened by network pharmacology.

Results

93 active components and 296 targets of JXXKD were identified, of which 156 overlapped with T2DM-related targets. PPI network showed that APP, AKT1, ANXA1, RXRA, C3, EGFR, ESR1, RELA, IL6, and MAPK8 were the top 10 relevant targets. GO analysis showed the common targets are mainly involved in oxidative stress, lipid metabolism, and nutrient levels, while KEGG analysis showed these targets may regulate lipids and atherosclerosis, AGE-RAGE signaling pathway, and TNF signaling pathway. Molecular docking suggested a satisfactory potential for key components to bind to these significant targets. The animal experiments showed that JXXKD significantly improved the symptoms of polyuria, decreased the protein levels of FBG and HOMA-IR, improved liver fat deposition, and decreased the gene expressions of Foxo1, Pparg and Akt in diabetic rats.

Conclusion

The mechanism of JXXKD treat T2DM may be achieved by modulating the expression of FOXO1, PPARG, and AKT, regulating the glucose and lipids metabolism.

金消渴汤对2型糖尿病大鼠的降糖作用及机制研究
现代研究和临床实践证明,中医药在治疗糖尿病方面具有独特的优势。金消渴汤(JXXKD)是中国古代治疗糖尿病的方剂,至今仍有良好的临床疗效。然而,JXXKD治疗T2DM的机制尚不清楚。目的通过网络药理学筛选靶点,探讨JXXKD对糖尿病大鼠的治疗作用及机制。方法从公开数据库中获取JXXKD的有效成分、相关靶点及T2DM靶点,利用Venny 2.1确定JXXKD治疗T2DM的共同靶点,并进行PPI、GO、KEGG分析。通过分子对接验证核心组分和靶点。采用高糖高脂饲料建立糖尿病大鼠Goto-Kakizaki模型,以Wistar大鼠为空白对照组。将糖尿病大鼠随机分为三组,分别给予生理盐水(MO)、二甲双胍(MET)或JXXKD,每天1次,连续4周。检测空腹血糖(FBG)、空腹血清胰岛素(FINS)、HOMA-IR,苏木精-伊红(HE)染色观察肝组织病理变化;qPCR检测网络药理学筛选的相关基因表达。结果共鉴定出JXXKD活性成分93个,靶点296个,其中156个与t2dm相关靶点重叠。PPI网络显示APP、AKT1、ANXA1、RXRA、C3、EGFR、ESR1、RELA、IL6和MAPK8是前10位的相关靶点。GO分析显示常见靶点主要涉及氧化应激、脂质代谢和营养水平,KEGG分析显示这些靶点可能调控脂质和动脉粥样硬化、AGE-RAGE信号通路和TNF信号通路。分子对接表明,关键成分与这些重要靶点的结合具有令人满意的潜力。动物实验显示,JXXKD显著改善糖尿病大鼠多尿症状,降低FBG和HOMA-IR蛋白水平,改善肝脏脂肪沉积,降低Foxo1、Pparg和Akt基因表达。结论JXXKD治疗T2DM的机制可能通过调节FOXO1、PPARG、AKT的表达,调节糖脂代谢来实现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Clinical complementary medicine and pharmacology
Clinical complementary medicine and pharmacology Complementary and Alternative Medicine
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