基于生物信息学的TLR4/NF-κB/COX2通路对王氏经验式抗nafld机制的探索。

IF 6 2区 医学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Suhong Chen, Chuanjie Zhou, Jiahui Huang, Yunlong Qiao, Ning Wang, Yuzhen Huang, Bo Li, Wanfeng Xu, Xinglishang He, Kungen Wang, Yihui Zhi, Guiyuan Lv, Shuhua Shen
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引用次数: 0

摘要

背景:由于饮食模式的改变,非酒精性脂肪性肝病(NAFLD)已经发展成为一个主要的公共健康挑战。不幸的是,对于NAFLD仍然缺乏有效的药物治疗方法。多年来,王氏经验方在治疗代谢性疾病方面表现出相当大的临床疗效。然而,WSF对NAFLD的保护作用及其潜在机制仍然知之甚少。方法:采用高糖高脂(HSHF)喂养17周的ICR小鼠32只,建立NAFLD模型。为了评估WSF对NAFLD的治疗效果,我们通过H&E和油红O染色检测了口服WSF后大鼠体重、脏器重量、血清和肝脏糖脂代谢生物标志物、转氨酶水平和肝脏组织病理学的变化。利用HPLC-Q-TOF/MS系统,从HMDB、MassBank和TCMSP数据库中挖掘数据库,并从CNKI、万方和VIP数据库中检索文献,对WSF中的化学成分进行了广泛的鉴定和收集。然后利用网络药理学方法的预测,基于前瞻性靶点识别和途径富集分析的表现,探讨WSF改善NAFLD的可能机制。此外,我们还进行了分子对接,验证WSF活性组分与NAFLD相关核心蛋白的结合活性。最后,通过ELISA、免疫组化(IHC)和免疫印迹(WB)分析对获得的通路进行验证实验。结果:药效学结果显示,WSF干预可有效减轻NAFLD小鼠的肥胖、器官脂肪堆积、脂质代谢紊乱、转氨酶水平异常和肝脏病理损伤(P)。WSF治疗可有效保护HSHF饮食诱导的NAFLD小鼠脂质代谢紊乱和肝脏炎症损伤,其分子机制可能是通过抑制TLR4/NF-κB/COX-2炎症通路,减少肝脏炎症因子的释放。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bioinformatics based exploration of the anti-NAFLD mechanism of Wang's empirical formula via TLR4/NF-κB/COX2 pathway.

Background: Nonalcoholic fatty liver disease (NAFLD) has developed as a leading public wellness challenge as a result of changes in dietary patterns. Unfortunately, there is still a lack of effective pharmacotherapy methods for NAFLD. Wang's empirical formula (WSF) has demonstrated considerable clinical efficacy in treating metabolic disorders for years. Nevertheless, the protective effect of WSF against NAFLD and its underlying mechanism remains poorly understood.

Methods: The NAFLD model was established using a 17-week high-sucrose and high-fat (HSHF) diet with 32 ICR mice. In assessing the therapeutic efficacy of WSF on NAFLD, we detected changes in body weight, viscera weight, biomarkers of glycolipid metabolism in serum and liver, transaminase levels and histopathology of liver with H&E and Oil Red O staining after oral administration. The chemical components in WSF were extensively identified and gathered utilizing the HPLC-Q-TOF/MS system, database mining from HMDB, MassBank, and TCMSP databases, alongside literature searches from CNKI, Wanfang and VIP databases. The forecast of network pharmacology approach was then utilized to investigate the probable mechanisms by which WSF improves NAFLD based on the performance of prospective target identification and pathway enrichment analysis. Besides, molecular docking was also conducted for the verification of combination activities between active components of WSF and core proteins related to NAFLD. In final, validation experiments of obtained pathways were conducted through ELISA, immunohistochemistry (IHC), and western blot (WB) analysis.

Results: Pharmacodynamic outcomes indicated that WSF intervention effectively mitigated obesity, fat accumulation in organs, lipid metabolism disorders, abnormal transaminase levels and liver pathology injury in NAFLD mice (P < 0.05, 0.01). A total of 72 existent ingredients of WSF were acquired by HPLC-Q-TOF/MS and database, and 254 common targets (11.6% in total targets) of NAFLD and WSF were identified. Network pharmacology revealed that WSF presses NAFLD via modulating TNF, IL6, AKT1, IL1B, PTGS2 (COX2), and other targets, and the probable pathways were primarily inflammatory signaling pathways, as confirmed by molecular docking. Molecular biology experiments further conformed that WSF could decrease levels of inflammatory factors like IL-1β, IL-6 and TNF-α (P < 0.01) and expression of TLR4, NF-κB and COX-2 (P < 0.05, 0.01) in the liver.

Conclusion: WSF treatment effectively protects against lipid metabolism disorders and liver inflammation injury in HSHF diet-induced NAFLD mice, and its molecular mechanism might be via suppressing the TLR4/NF-κB/COX-2 inflammatory pathway to reduce the release of inflammatory cytokines in the liver.

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来源期刊
Molecular Medicine
Molecular Medicine 医学-生化与分子生物学
CiteScore
8.60
自引率
0.00%
发文量
137
审稿时长
1 months
期刊介绍: Molecular Medicine is an open access journal that focuses on publishing recent findings related to disease pathogenesis at the molecular or physiological level. These insights can potentially contribute to the development of specific tools for disease diagnosis, treatment, or prevention. The journal considers manuscripts that present material pertinent to the genetic, molecular, or cellular underpinnings of critical physiological or disease processes. Submissions to Molecular Medicine are expected to elucidate the broader implications of the research findings for human disease and medicine in a manner that is accessible to a wide audience.
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