Instituto de Química, Universidade Federal da Bahia, Salvador 40170-280, BA, Brazil.
Department of Pharmaceutical Sciences, Pharmaceutical Chemistry Section, CIETUS/IBSAL, Faculty of Pharmacy, University of Salamanca, 37007 Salamanca, Spain.
Molecules. 2021 Feb 18;26(4):1081. doi: 10.3390/molecules26041081.
Betulinic acid (BA, 3β-hydroxy-lup-20(29)-en-28-oic acid) is a pentacyclic triterpene acid present predominantly in ssp. (Betulaceae) and is also widely spread in many species belonging to different plant families. BA presents a wide spectrum of remarkable pharmacological properties, such as cytotoxic, anti-HIV, anti-inflammatory, antidiabetic and antimicrobial activities, including antiprotozoal effects. The present review first describes the sources of BA and discusses the chemical strategies to produce this molecule starting from betulin, its natural precursor. Next, the antiprotozoal properties of BA are briefly discussed and the chemical strategies for the synthesis of analogues displaying antiplasmodial, antileishmanial and antitrypanosomal activities are systematically presented. The antiplasmodial activity described for BA was moderate, nevertheless, some C-3 position acylated analogues showed an improvement of this activity and the hybrid models-with artesunic acid-showed the most interesting properties. Some analogues also presented more intense antileishmanial activities compared with BA, and, in addition to these, heterocycles fused to C-2/C-3 positions and amide derivatives were the most promising analogues. Regarding the antitrypanosomal activity, some interesting antitrypanosomal derivatives were prepared by amide formation at the C-28 carboxylic group of the lupane skeleton. Considering that BA can be produced either by isolation of different plant extracts or by chemical transformation of betulin, easily obtained from ssp., it could be said that BA is a molecule of great interest as a starting material for the synthesis of novel antiprotozoal agents.
白桦脂酸(BA,3β-羟基-羊毛甾-20(29)-烯-28-酸)是一种五环三萜酸,主要存在于 亚种(桦木科)中,也广泛分布于许多属于不同植物科的物种中。BA 具有广泛的显著药理特性,如细胞毒性、抗 HIV、抗炎、抗糖尿病和抗菌活性,包括抗原生动物作用。本综述首先描述了 BA 的来源,并讨论了从其天然前体白桦脂醇开始生产这种分子的化学策略。接下来,简要讨论了 BA 的抗原生动物特性,并系统地介绍了显示抗疟原虫、抗利什曼原虫和抗锥虫活性的类似物的化学合成策略。BA 描述的抗疟原虫活性中等,但一些 C-3 位酰化类似物显示出这种活性的改善,并且与青蒿琥酯的杂种模型显示出最有趣的特性。一些类似物也显示出比 BA 更强的抗利什曼原虫活性,此外,与 C-2/C-3 位置融合的杂环和酰胺衍生物是最有前途的类似物。关于抗锥虫活性,通过在羽扇豆烷骨架的 C-28 羧酸基团上形成酰胺,制备了一些有趣的抗锥虫衍生物。考虑到 BA 可以通过从 亚种中分离的不同植物提取物或白桦脂醇的化学转化来生产,很容易获得,因此可以说 BA 是一种作为合成新型抗原生动物剂的起始材料具有很大兴趣的分子。