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小檗碱作为一种生物活性生物碱:多组学视角下其在肥胖管理中的作用

Berberine as a Bioactive Alkaloid: Multi-Omics Perspectives on Its Role in Obesity Management.

作者信息

Zieniuk Bartłomiej, Pawełkowicz Magdalena

机构信息

Department of Chemistry, Institute of Food Sciences, Warsaw University of Life Sciences-SGGW, 159C Nowoursynowska Str., 02-776 Warsaw, Poland.

Department of Plant Genetics, Breeding and Biotechnology, Institute of Biology, Warsaw University of Life Sciences-SGGW, 159 Nowoursynowska Str., 02-776 Warsaw, Poland.

出版信息

Metabolites. 2025 Jul 9;15(7):467. doi: 10.3390/metabo15070467.

Abstract

Berberine, a bioactive isoquinoline alkaloid derived from medicinal plants such as and species, shows significant promise for managing obesity and associated metabolic disorders. This review synthesizes evidence on its modulation of AMP-activated protein kinase (AMPK) signaling, gut microbiota composition, lipid metabolism, and adipokine networks, elucidating how these actions converge to suppress adipogenesis and improve insulin sensitivity. Metabolomic profiling reveals critical shifts in bile acid metabolism, short-chain fatty acid production, and mitochondrial function. Recent studies also highlight berberine's anti-inflammatory effects and regulatory influence on glucose homeostasis. Despite its promise, challenges in oral bioavailability and drug interactions necessitate the development of advanced delivery strategies. We further discuss nanoformulations and multi-omics approaches, which integrate data from genomics, transcriptomics, proteomics, and metabolomics, provide new insights into berberine's mechanisms, and may guide personalized therapeutic applications. While promising, further studies are needed to validate these findings in humans and translate them into effective clinical strategies.

摘要

小檗碱是一种从诸如黄连和黄柏等药用植物中提取的具有生物活性的异喹啉生物碱,在治疗肥胖症及相关代谢紊乱方面显示出巨大潜力。本综述综合了有关其对AMP激活蛋白激酶(AMPK)信号传导、肠道微生物群组成、脂质代谢和脂肪因子网络的调节作用的证据,阐明了这些作用如何共同抑制脂肪生成并提高胰岛素敏感性。代谢组学分析揭示了胆汁酸代谢、短链脂肪酸产生和线粒体功能的关键变化。近期研究还突出了小檗碱的抗炎作用及其对葡萄糖稳态的调节影响。尽管前景广阔,但口服生物利用度和药物相互作用方面的挑战使得有必要开发先进的给药策略。我们进一步讨论了纳米制剂和多组学方法,这些方法整合了来自基因组学、转录组学、蛋白质组学和代谢组学的数据,为小檗碱的作用机制提供了新见解,并可能指导个性化治疗应用。尽管前景乐观,但仍需进一步研究以在人体中验证这些发现并将其转化为有效的临床策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8570/12299511/e6186a56a060/metabolites-15-00467-g001.jpg

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