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The Flavonoid Components of Scutellaria baicalensis: BiopharmaceuticalProperties and their Improvement using Nanoformulation Techniques

黄芩 黄芩苷 黄芩素 生物利用度 沃戈宁 生物制药 药物输送 类黄酮 黄芩 体内 药理学 化学 传统医学 医学 生物技术 中医药 生物 生物化学 色谱法 抗氧化剂 替代医学 高效液相色谱法 有机化学 病理
作者
Jiaxin Pi,Jilin Wang,Xiaojiao Feng,Ziwei Li,Yiting Liu,Wenzhuo Yang,Tingen Zhang,Pan Guo,Zhidong Liu,Dongli Qi
出处
期刊:Current Topics in Medicinal Chemistry [Bentham Science Publishers]
卷期号:23 (1): 17-29 被引量:45
标识
DOI:10.2174/1568026623666221128144258
摘要

Abstract: Scutellaria baicalensis georgi, known as “Huangqin” in its dried root form, is a herb widely used in traditional Chinese medicine for “clearing away heat, removing dampness, purging fire and detoxification”. Baicalin, baicalein, wogonin, and wogonoside are the main flavonoid com-pounds found in Scutellaria baicalensis. Scutellaria baicalensis flavonoid components have the po-tential to prevent and treat a host of diseases. The components of S. baicalensis have limited clinical application due to their low water solubility, poor permeability, and microbial transformation in vi-vo. Nanopharmaceutical techniques can improve their biopharmaceutical properties, enhance their absorption in vivo, and improve their bioavailability. However, due to the limited number of clinical trials, doubts remain about their toxicity and improvements in human absorption as a result of nanoformulations. This review summarizes the latest and most comprehensive information regard-ing the absorption, distribution, metabolism, and excretion of the Scutellaria baicalensis compo-nents in vivo. We examined the main advantages of nanodrug delivery systems and collected de-tailed information on the nanosystem delivery of the Scutellaria baicalensis components, including nanosuspensions and various lipid-based nanosystems. Lipid-based systems including liposomes, solid lipid nanoparticles, nanoemulsions, and self-micro emulsifying drug delivery systems are in-troduced in detail. In addition, we make recommendations for related and future research directions. Future research should further examine the absorption mechanisms and metabolic pathways of nanoformulations of the components of Scutellaria baicalensis in vivo, and accurately track the in vivo behavior of these drug delivery systems to discover the specific reasons for the enhanced bioa-vailability of nanoformulations of the scutellaria baicalensis components. The development of tar-geted oral administration of intact nanoparticles of Scutellaria baicalensis components is an excit-ing prospect.
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