Ming Xie, Jia Liu, Rui Pu, Xiang Qiu, Jiahao Wang, Keyan Zhang, Haibing Hua, Xiandeng Li
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引用次数: 0
Abstract
Wogonoside, a major flavone 7-O-glucuronide from Scutellaria baicalensis Georgi, has long been used as a quality-control marker for Scutellariae Radix and related traditional herbal formulations. Emerging evidence suggests that wogonoside is not merely an analytical marker or an inactive glucuronide, but a pharmacologically active constituent and potential precursor of bioactive metabolites. In preclinical models, it exhibits anti-inflammatory, antioxidant, anti-angiogenic, anti-fibrotic, antitumor, cardioprotective, neuroprotective, and renoprotective activities. These effects are associated with the regulation of key signaling networks involved in inflammation, oxidative stress, inflammasome activation, autophagy, angiogenesis, fibrosis, and regulated cell death. Representative mechanisms include modulation of TLR4/NF-κB/NLRP3, Nrf2/HO-1, PI3K/AKT/mTOR, AMPK/mTOR, Wnt/β-catenin, Hedgehog/SMO/Gli1, and ferroptosis-related SLC7A11/GPX4 signaling. Recent target-validation studies have identified several candidate molecular targets, including SMO, NF-κB p65, HNF4α, NEK7, GPX4, TLR4, and CD39. However, the strength of evidence varies, and direct target engagement remains to be confirmed for many of these proteins. Pharmacokinetic studies reveal complex disposition characteristics, including intestinal microbial deglycosylation to wogonin, intestinal and hepatic re-glucuronidation, transporter-mediated efflux, enterohepatic or enteric recycling, and frequent multiple-peak plasma profiles. These properties support the value of wogonoside as both a quality-control marker and a dynamic exposure-related marker in Scutellaria-containing preparations. This review summarizes current advances in the chemical analysis, pharmacokinetics, biotransformation, molecular pharmacology, and disease-specific actions of wogonoside, and discusses key challenges for future development, including variable bioavailability, metabolite contribution, target specificity, pharmacokinetic-pharmacodynamic relationships, and clinical translation.
黄芩苷(Wogonoside)是黄芩中的一种主要黄酮7- o -葡糖苷类化合物,长期以来被用作黄芩及相关中药制剂的质量控制标志。越来越多的证据表明,枸杞皂苷不仅是一种分析标记物或无活性的葡萄糖醛酸盐,而且是一种具有药理活性的成分和生物活性代谢产物的潜在前体。在临床前模型中,它具有抗炎、抗氧化、抗血管生成、抗纤维化、抗肿瘤、心脏保护、神经保护和肾保护活性。这些作用与涉及炎症、氧化应激、炎性体活化、自噬、血管生成、纤维化和受调节的细胞死亡的关键信号网络的调节有关。代表性的机制包括TLR4/NF-κB/NLRP3、Nrf2/HO-1、PI3K/AKT/mTOR、AMPK/mTOR、Wnt/β-catenin、Hedgehog/SMO/Gli1和铁衰相关的SLC7A11/GPX4信号的调节。最近的靶标验证研究已经确定了几个候选分子靶标,包括SMO、NF-κB p65、HNF4α、NEK7、GPX4、TLR4和CD39。然而,证据的强度各不相同,许多这些蛋白质的直接靶作用仍有待证实。药代动力学研究揭示了复杂的处置特征,包括肠道微生物去糖基化为沃戈宁,肠道和肝脏再葡萄糖醛酸化,转运体介导的外排,肠肝或肠内再循环,以及频繁的多峰血浆谱。这些性质支持了枸杞皂苷在黄芩制剂中作为质量控制标记和动态暴露相关标记的价值。本文综述了乌草皂苷在化学分析、药代动力学、生物转化、分子药理学和疾病特异性作用方面的最新进展,并讨论了未来发展的主要挑战,包括可变生物利用度、代谢物贡献、靶点特异性、药代动力学-药效学关系和临床翻译。
期刊介绍:
Biochemical Pharmacology publishes original research findings, Commentaries and review articles related to the elucidation of cellular and tissue function(s) at the biochemical and molecular levels, the modification of cellular phenotype(s) by genetic, transcriptional/translational or drug/compound-induced modifications, as well as the pharmacodynamics and pharmacokinetics of xenobiotics and drugs, the latter including both small molecules and biologics.
The journal''s target audience includes scientists engaged in the identification and study of the mechanisms of action of xenobiotics, biologics and drugs and in the drug discovery and development process.
All areas of cellular biology and cellular, tissue/organ and whole animal pharmacology fall within the scope of the journal. Drug classes covered include anti-infectives, anti-inflammatory agents, chemotherapeutics, cardiovascular, endocrinological, immunological, metabolic, neurological and psychiatric drugs, as well as research on drug metabolism and kinetics. While medicinal chemistry is a topic of complimentary interest, manuscripts in this area must contain sufficient biological data to characterize pharmacologically the compounds reported. Submissions describing work focused predominately on chemical synthesis and molecular modeling will not be considered for review.
While particular emphasis is placed on reporting the results of molecular and biochemical studies, research involving the use of tissue and animal models of human pathophysiology and toxicology is of interest to the extent that it helps define drug mechanisms of action, safety and efficacy.