Effect and Mechanism of Qihua Tongtiao Formula (QHTTF) on Improving Glucose and Lipid Metabolism Disorders in ZDF Rats by Integrating Network Pharmacology, Metabolomics, and Biological Validation.

IF 4.8 3区 医学 Q2 CHEMISTRY, MEDICINAL
Pharmaceuticals Pub Date : 2025-09-08 DOI:10.3390/ph18091347
Yuhua Jiang, Hong Yu, Yajing Pan, Binghan Zhang, Yeteng Jing, Jingjing Lei, Ning Li, Jinsheng Yang
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引用次数: 0

Abstract

Background: The dysregulation of both glucose and lipid metabolism is the main clinical features of type 2 diabetes. Qihua Tongtiao Formula (QHTTF) is our team's current clinical empirical formula, and the related patent has been granted. It is composed of Astragalus membranaceus, Atractylodes macrocephala koidz, Aurantii Fructus Immaturus, Radix Bupleuri, Ligusticum chuanxiong hort, Angelicae sinensis radix, Raphanus sativus, and Polyporus umbellatus. It can alleviate tissue pathological damage in type 2 diabetic rats by improving glycolipid metabolism disorders. Nevertheless, the specific mechanisms of QHTTF in the treatment of type 2 diabetes remain unclear. Purpose: This research aims to explore the fundamental effect and underlying mechanism of the QHTTF formula in ZDF rats via network pharmacology, biological validation, and metabolomics technology. Methods: The chemical compounds of QHTTF were initially identified via UHPLC-MS/MS analysis. Meanwhile, drug targets, genes, related diseases, and differential metabolites of QHTTF in the treatment of T2DM were obtained through network pharmacology, molecular docking, and metabolomics. Then, we conducted animal experiments to further explore the therapeutic molecular mechanism of QHTTF in ZDF rats. Results: A total of 39 main chemical components were recognized through LC-MS/MS technology, and 22 remained after the second screening. Network pharmacology and molecular docking results revealed that 59 intersection targets were involved in the treatment of glycolipid metabolic disorders, and the PPARα, PPARγ, and TNF proteins were identified as crucial targets through PPI network analysis. Additionally, serum metabolomics analysis of ZDF rats showed that QHTTF could regulate linoleic acid metabolism, fructose and mannose metabolism, galactose metabolism, fatty acid biosynthesis, and other related signaling pathways. The results of biological experiments proved that QHTTF effectively lowered blood glucose and lipid levels, alleviated hepatic and pancreatic pathological damage, increased the expression of IRS-1 and GLUT4 in the pancreas, and improved insulin resistance, while inhibiting the inflammatory response and oxidative stress, as well as enhancing the expression of liver PPARα, PPARγ, and AMPK proteins in ZDF rats. Conclusions: In summary, QHTTF exerted a significant effect in improving glycolipid metabolism disorders of ZDF rats, which might show therapeutic effects by relieving insulin resistance, mitigating inflammation and oxidative damage, regulating related glucose, fatty acid, and amino acid metabolism, and increasing the expression of PPARα, PPARγ, and AMPK proteins by combining network analysis, metabolomics, and biological research.

七花通调方改善ZDF大鼠糖脂代谢紊乱的网络药理学、代谢组学和生物学验证的作用及机制
背景:糖脂代谢紊乱是2型糖尿病的主要临床特征。七花通络方(QHTTF)是我团队目前的临床经验方,相关专利已获授权。由黄芪、苍术、枳实、柴胡、川芎、当归、大白菜、伞形蓼等组成。可通过改善糖脂代谢紊乱,减轻2型糖尿病大鼠组织病理损伤。然而,QHTTF治疗2型糖尿病的具体机制尚不清楚。目的:通过网络药理学、生物学验证和代谢组学等技术,探讨中药复方QHTTF对ZDF大鼠的基本作用及其机制。方法:采用超高效液相色谱-质谱联用技术对其化学成分进行初步鉴定。同时,通过网络药理学、分子对接、代谢组学等手段获得QHTTF治疗T2DM的药物靶点、基因、相关疾病、差异代谢物等信息。然后,我们进行动物实验,进一步探讨QHTTF对ZDF大鼠的治疗分子机制。结果:通过LC-MS/MS技术共识别出39个主要化学成分,第二次筛选后剩余22个。网络药理学和分子对接结果显示,59个交叉靶点参与糖脂代谢紊乱的治疗,通过PPI网络分析确定PPARα、PPARγ和TNF蛋白为关键靶点。此外,ZDF大鼠血清代谢组学分析显示,QHTTF可调节亚油酸代谢、果糖和甘露糖代谢、半乳糖代谢、脂肪酸生物合成等相关信号通路。生物学实验结果证明,QHTTF能有效降低ZDF大鼠的血糖和血脂水平,减轻肝脏和胰腺病理损伤,增加胰腺IRS-1和GLUT4的表达,改善胰岛素抵抗,同时抑制炎症反应和氧化应激,增强肝脏PPARα、PPARγ和AMPK蛋白的表达。结论:综上所述,结合网络分析、代谢组学和生物学研究,QHTTF对ZDF大鼠糖脂代谢紊乱具有显著改善作用,可能通过缓解胰岛素抵抗、减轻炎症和氧化损伤,调节相关葡萄糖、脂肪酸和氨基酸代谢,增加PPARα、PPARγ和AMPK蛋白的表达来发挥其治疗作用。
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来源期刊
Pharmaceuticals
Pharmaceuticals Pharmacology, Toxicology and Pharmaceutics-Pharmaceutical Science
CiteScore
6.10
自引率
4.30%
发文量
1332
审稿时长
6 weeks
期刊介绍: Pharmaceuticals (ISSN 1424-8247) is an international scientific journal of medicinal chemistry and related drug sciences.Our aim is to publish updated reviews as well as research articles with comprehensive theoretical and experimental details. Short communications are also accepted; therefore, there is no restriction on the maximum length of the papers.
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