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基于化学成分、药理学和药代动力学的系统性综述:对个体化医疗中葛根的启示

A Systematic Review of Phytochemistry, Pharmacology and Pharmacokinetics on Radix: Implications for Radix as a Personalized Medicine.

机构信息

Joint Laboratory for Translational Cancer Research of Chinese Medicine of the Ministry of Education of the People's Republic of China, International Institute for Translational Chinese Medicine, Guangzhou University of Chinese Medicine, Guangzhou, Guangdong 510006, China.

State Key Laboratory of Quality Research in Chinese Medicine, Macau University of Science and Technology, Macau (SAR) 999078, China.

出版信息

Int J Mol Sci. 2019 Mar 22;20(6):1463. doi: 10.3390/ijms20061463.

Abstract

radix (AR) is one of the most widely used traditional Chinese herbal medicines. Modern pharmacological studies and clinical practices indicate that AR possesses various biological functions, including potent immunomodulation, antioxidant, anti-inflammation and antitumor activities. To date, more than 200 chemical constituents have been isolated and identified from AR. Among them, isoflavonoids, saponins and polysaccharides are the three main types of beneficial compounds responsible for its pharmacological activities and therapeutic efficacy. After ingestion of AR, the metabolism and biotransformation of the bioactive compounds were extensive in vivo. The isoflavonoids and saponins and their metabolites are the major type of constituents absorbed in plasma. The bioavailability barrier (BB), which is mainly composed of efflux transporters and conjugating enzymes, is expected to have a significant impact on the bioavailability of AR. This review summarizes studies on the phytochemistry, pharmacology and pharmacokinetics on AR. Additionally, the use of AR as a personalized medicine based on the BB is also discussed, which may provide beneficial information to achieve a better and more accurate therapeutic response of AR in clinical practice.

摘要

白芍是最常用的传统中药之一。现代药理学研究和临床实践表明,白芍具有多种生物功能,包括强大的免疫调节、抗氧化、抗炎和抗肿瘤活性。迄今为止,已从白芍中分离鉴定出 200 多种化学成分。其中,异黄酮、皂苷和多糖是其药理活性和治疗功效的三种主要有益化合物类型。白芍摄入后,其生物活性化合物在体内的代谢和生物转化非常广泛。异黄酮、皂苷及其代谢物是吸收到血浆中的主要成分类型。生物利用度障碍(BB)主要由外排转运体和结合酶组成,预计对白芍的生物利用度有重大影响。本综述总结了白芍的植物化学、药理学和药代动力学研究。此外,还讨论了基于 BB 将白芍作为个体化药物的应用,这可能为在临床实践中实现更好、更准确的白芍治疗反应提供有益信息。

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