Pharmacological potential of Astragali Radix for the treatment of kidney diseases

根(腹足类) 医学 毛花素 黄芪 中医药 传统医学 药理学 糖尿病肾病 人参 内科学 生物 病理 芒柄花素 大豆黄酮 植物 替代医学 染料木素
作者
Yue Shi,Xiujie Shi,Mingming Zhao,Sijia Ma,Yu Zhang
出处
期刊:Phytomedicine [Elsevier]
卷期号:123: 155196-155196 被引量:11
标识
DOI:10.1016/j.phymed.2023.155196
摘要

With the increasing prevalence of hypertension, diabetes, and obesity, the incidence of kidney diseases is also increasing, resulting in a serious public burden. Conventional treatments for kidney diseases have unsatisfactory effects and are associated with adverse reactions. Traditional Chinese medicines have good curative effects and advantages over conventional treatments for preventing and treating kidney diseases. Astragali Radix is a Chinese herbal medicine widely used to treat kidney diseases. To review the potential applications and molecular mechanisms underlying the renal protective effects of Astragali Radix and its components and to provide direction and reference for new therapeutic strategies and future research and development of Astragali Radix. PubMed, Google Scholar, and Web of Science were searched using keywords, including “Astragali Radix,” “Astragalus,” “Astragaloside IV” (AS-IV), “Astragali Radix polysaccharide” (APS), and “kidney diseases.” Reports on the effects of Astragali Radix and its components on kidney diseases were identified and reviewed. The main components of Astragali Radix with kidney-protective properties include AS-IV, APS, calycosin, formononetin, and hederagenin. Astragali Radix and its active components have potential pharmacological effects for the treatment of kidney diseases, including acute kidney injury, diabetic nephropathy, hypertensive renal damage, chronic glomerulonephritis, and kidney stones. The pharmacological effects of Astragali Radix are manifested through the inhibition of inflammation, oxidative stress, fibrosis, endoplasmic reticulum stress, apoptosis, and ferroptosis, as well as the regulation of autophagy. Astragali Radix is a promising drug candidate for treating kidney diseases. However, current research is limited to animal and cell studies, underscoring the need for further verifications using high-quality clinical data.
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