4.6 Review

Current Progress and Outlook for Agrimonolide: A Promising Bioactive Compound from Agrimonia pilosa Ledeb.

Journal

PHARMACEUTICALS
Volume 16, Issue 2, Pages -

Publisher

MDPI
DOI: 10.3390/ph16020150

Keywords

agrimonolide; Agrimonia pilosa Ledeb; pharmacological effect; safety

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Agrimonolide (AM), derived from isocoumarins, is a lipophilic compound found in Agrimonia pilosa Ledeb. It has shown potential as a multitarget natural treatment for diseases such as cancer, inflammation, hepatic injury, myocardial damage, and diabetes mel litus. However, there is a lack of substantial animal or human data regarding its pharmacological activities, mechanisms of action, and safety. The review emphasizes the need for further investigation into AM and discusses potential strategies to address previous research limitations.
Agrimonolide (AM), which is a derivative of isocoumarins, is found mainly in the herb Agrimonia pilosa 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.

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