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白头婆中二氢黄酮醇类化合物作为杀锥虫化合物:化学成分修饰后的苦苣菜提取物的生物导向分离。

Psilostachyins as trypanocidal compounds: Bioguided fractionation of Ambrosia tenuifolia chemically modified extract.

机构信息

Facultad de Ciencias Químicas, Universidad Nacional de Córdoba (UNC), Ciudad Universitaria, X5000HUA, Córdoba, Argentina; Instituto Multidisciplinario de Biología Vegetal (IMBIV), Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET), Córdoba, Argentina.

Facultad de Ciencias Químicas, Universidad Nacional de Córdoba (UNC), Ciudad Universitaria, X5000HUA, Córdoba, Argentina; Centro de Investigaciones en Bioquímica Clínica e Inmunología (CIBICI-CONICET), Córdoba, Argentina.

出版信息

Phytochemistry. 2022 Feb;194:113014. doi: 10.1016/j.phytochem.2021.113014. Epub 2021 Nov 16.

Abstract

This work focusses on the chemical diversification of an Ambrosia tenuifolia extract and its bioguided fractionation, aiming to unveil the chemical entity responsible for the trypanocidal activity. Besides, a revision of the phytochemical study of this species, based on previous reports of the antiparasitic psilostachyins A and C as main compounds, was conducted. To improve the biological properties of a plant extract through a simple chemical reaction, the oxidative diversification of the dichloromethane extract of this plant species was carried out. A bioguided fractionation of a chemically modified extract was performed by evaluating the inhibitory activity against Trypanosoma cruzi trypomastigotes. This experiment led to the isolation of one of the most active compounds. In general terms, epoxidized metabolites were obtained as a result of the oxidation of the major metabolite of the species. The trypanocidal activity of some tested metabolites overperformed the reference drug, benznidazole, displaying no cytotoxicity at trypanocidal concentrations. Key structure-activity relationships were obtained for designing previously undescribed antiparasitic sesquiterpene lactones.

摘要

这项工作专注于 Ambrosia tenuifolia 提取物的化学多样化及其生物导向的分离,旨在揭示具有杀锥虫活性的化学实体。此外,基于先前报道的抗寄生虫 psilostachyins A 和 C 作为主要化合物,对该物种的植物化学研究进行了修订。为了通过简单的化学反应提高植物提取物的生物特性,对该植物物种的二氯甲烷提取物进行了氧化多样化。通过评估对 Trypanosoma cruzi 锥虫的抑制活性,对化学修饰提取物进行了生物导向分离。该实验导致了最活跃化合物之一的分离。一般来说,氧化产物是该物种主要代谢物的氧化产物。一些测试代谢物的杀锥虫活性优于参考药物苯并硝唑,在杀锥虫浓度下没有细胞毒性。获得了关键的结构-活性关系,用于设计以前未描述的抗寄生虫倍半萜内酯。

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