Huang Ting, Zhao Chun-Cao, Xue Man, Cao Yun-Feng, Chen Liang-Kang, Chen Jian-Xing, Sun Yi-Jie, Zeng Jia
Shanghai Institute for Biomedical and Pharmaceutical Technologies, NHC Key Lab of Reproduction Regulation, Shanghai Engineer and Technology Research Center of Reproductive Health Drug and Devices, Shanghai 200032, China.
Huadong Hospital Affiliated to Fudan University, Shanghai 200040, China.
Pharmaceuticals (Basel). 2023 Jan 19;16(2):150. doi: 10.3390/ph16020150.
Agrimonolide (AM), which is a derivative of isocoumarins, is found mainly in the herb Ledeb. This compound is highly lipophilic and readily crosses the blood-brain barrier. In recent years, interest has grown in the use of AM as a multitarget natural treatment for various diseases, such as cancer, inflammation, hepatic injury, myocardial damage, and diabetes mellitus. The potential mechanisms of these pharmacological effects have been clarified at cellular and molecular levels. AM shows no cytotoxicity over a range of concentrations in different types of cells, providing evidence for its good safety profile in vitro. These findings indicate that AM is a promising medicinal agent. However, most studies on AM's pharmacological activities, mechanisms of action, and safety lack substantial animal or human data. Additionally, the pharmacokinetics, metabolism, and disposition of this compound have received little attention. This review highlights the status of current information regarding the sources, properties, pharmacological effects, and safety of AM. Furthermore, potential strategies to resolve problematic issues identified in previous studies are fully discussed. This summary and analysis of the research progress of AM may inspire deeper investigations and more extensive applications of AM in the future.
龙牙草内酯(AM)是异香豆素的衍生物,主要存在于龙牙草属植物中。该化合物具有高度的亲脂性,能够轻易穿过血脑屏障。近年来,人们越来越关注将AM作为一种多靶点天然药物用于治疗各种疾病,如癌症、炎症、肝损伤、心肌损伤和糖尿病。这些药理作用的潜在机制已在细胞和分子水平上得到阐明。在不同类型细胞的一系列浓度范围内,AM均未显示出细胞毒性,这为其在体外良好的安全性提供了证据。这些发现表明AM是一种有前景的药物。然而,大多数关于AM药理活性、作用机制和安全性的研究缺乏大量的动物或人体数据。此外,该化合物的药代动力学、代谢和处置情况很少受到关注。本综述重点介绍了有关AM的来源、性质、药理作用和安全性的当前信息状况。此外,还充分讨论了解决先前研究中发现的问题的潜在策略。对AM研究进展的这一总结和分析可能会激发未来对AM更深入的研究和更广泛的应用。