Suppr超能文献

熊果酸和齐墩果酸半合成衍生物对亚马逊地区分离出的抗氯喹疟原虫有活性。

Ursolic and betulinic semisynthetic derivatives show activity against CQ-resistant Plasmodium falciparum isolated from Amazonia.

机构信息

Programa de Pós-Graduação em Biologia Experimental, Porto Velho, Brasil.

Plataforma de Bioensaios em Malária e Leishmaniose - Fundação Oswaldo Cruz, Porto Velho, Brasil.

出版信息

Chem Biol Drug Des. 2021 May;97(5):1038-1047. doi: 10.1111/cbdd.13835. Epub 2021 Mar 15.

Abstract

ACT's low levels of Plasmodium parasitemia clearance are worrisome since it is the last treatment option against P. falciparum. This scenario has led to investigations of compounds with different mechanisms of action for malaria treatment. Natural compounds like ursolic acid (UA) and betulinic acid (BA), distinguished by their activity against numerous microorganisms, including P. falciparum, have become relevant. This study evaluated the antiplasmodial activity of imidazole derivatives of UA and BA against P. falciparum in vitro. Eight molecules were obtained by semisynthesis and tested against P. falciparum strains (NF54 and CQ-resistant 106/cand isolated in Porto Velho, Brazil); 2a and 2b showed activity against NF54 and 106/cand strains with IC  < 10 µM. They presented high selectivity indexes (SI > 25) and showed synergism when combined with artemisinin. 2b inhibited the parasite's ring and schizont forms regardless of when the treatment began. In silico analysis presented a tight bind of 2b in the topoisomerase II-DNA complex. This study demonstrates the importance of natural derivate compounds as new candidates for malarial treatment with new mechanisms of action. Semisynthesis led to new triterpenes that are active against P. falciparum and may represent new alternatives for malaria drug development.

摘要

ACT 对疟原虫清除率低令人担忧,因为它是治疗恶性疟原虫的最后一种选择。这种情况促使人们研究具有不同作用机制的化合物来治疗疟疾。熊果酸 (UA) 和白桦脂酸 (BA) 等天然化合物因其对包括恶性疟原虫在内的多种微生物的活性而受到关注。本研究评估了 UA 和 BA 的咪唑衍生物对体外疟原虫的抗疟活性。通过半合成得到了 8 种分子,并对疟原虫株(NF54 和对青蒿素耐药的 106/cand 株,均分离自巴西波多韦柳)进行了测试;2a 和 2b 对 NF54 和 106/cand 株均有活性,IC < 10 μM。它们具有较高的选择性指数(SI > 25),与青蒿素联合使用具有协同作用。2b 可抑制寄生虫的环和裂殖体期,而与何时开始治疗无关。计算机模拟分析显示 2b 与拓扑异构酶 II-DNA 复合物紧密结合。本研究表明,天然衍生化合物作为具有新作用机制的抗疟治疗新候选药物的重要性。半合成导致了对疟原虫具有活性的新三萜类化合物,可能为抗疟药物开发提供新的选择。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验