Therapeutic potential and novel formulations of ursolic acid and its derivatives: an updated review

熊果酸 齐墩果酸 白桦酸 化学成分 癌症 传统医学 化学 医学 药理学 生物 色谱法 遗传学 内科学 病理 替代医学
作者
Priya Namdeo,Bina Gidwani,Sakshi Tiwari,Vishal Jain,Veenu Joshi,Shiv Shankar Shukla,Ravindra K. Pandey,Amber Vyas
出处
期刊:Journal of the Science of Food and Agriculture [Wiley]
卷期号:103 (9): 4275-4292 被引量:25
标识
DOI:10.1002/jsfa.12423
摘要

Abstract Plants produce biologically active metabolites that have been utilised to cure a variety of severe and persistent illnesses. There is a possibility that understanding how these bioactive molecules work would allow researchers to come up with better treatments for diseases including malignancy, cardiac disease and neurological disorders. A triterpene called ursolic acid (UA) is a pentacyclic prevalent triterpenoid found in fruits, leaves, herbs and blooms. The biological and chemical aspects of UA, as well as their presence, plant sources and biosynthesis, and traditional and newer technologies of extraction, are discussed in this review. Because of its biological function in the creation of new therapeutic techniques, UA is a feasible option for the evolution and medical management of a wide range of medical conditions, including cancer and other life threatening diseases. Despite this, the substance's poor solubility in aquatic environments makes it unsuitable for medicinal purposes. This hurdle was resolved in many different ways. The inclusion of UA into various pharmaceutical delivery approaches was found to be quite effective in this respect. This review also describes the properties of UA and its pharmacokinetics, as well as therapeutic applications of UA for cancer, inflammatory and cardiovascular diseases, in addition to its anti‐diabetic, immunomodulatory, hepatoprotective and anti‐microbial properties. Some of the recent findings related to novel nano‐sized carriers as a delivery system for UA and the patents related to the applications of UA and its various derivatives are covered in this review. The analytical study of UA, oleanolic acid and other phytoconstituents by UV, HPLC, high‐performance thin‐layer chromatography and gas chromatography is also discussed. In the future, UA could be explored in vivo using various animal models and, in addition, the regulatory status regarding UA needs to be explored. © 2023 Society of Chemical Industry.
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