Araujo-Lima Carlos Fernando, de Cassia Castro Carvalho Rita, Rosario Sandra Loureiro, Leite Debora Inacio, Aguiar Anna Caroline Campos, de Souza Santos Lizandra Vitoria, de Araujo Julianna Siciliano, Salomão Kelly, Kaiser Carlos Roland, Krettli Antoniana Ursine, Bastos Monica Macedo, Aiub Claudia Alessandra Fortes, de Nazaré Correia Soeiro Maria, Boechat Nubia, Felzenszwalb Israel
Laboratório de Biologia Celular, LBC Instituto Oswaldo Cruz-FIOCRUZ, Rio de Janeiro 21041-250, RJ, Brazil.
Laboratório de Mutagênese Ambiental, LabMut Instituto de Biologia Roberto Alcantara Gomes, IBRAG-UERJ, Rio de Janeiro 22050-020, RJ, Brazil.
Pharmaceuticals (Basel). 2023 May 24;16(6):782. doi: 10.3390/ph16060782.
Statins present a plethora of pleiotropic effects including anti-inflammatory and antimicrobial responses. A,α-difluorophenylacetamides, analogs of diclofenac, are potent pre-clinical anti-inflammatory non-steroidal drugs. Molecular hybridization based on the combination of pharmacophoric moieties has emerged as a strategy for the development of new candidates aiming to obtain multitarget ligands.
Considering the anti-inflammatory activity of phenylacetamides and the potential microbicidal action of statins against obligate intracellular parasites, the objective of this work was to synthesize eight new hybrid compounds of α,α-difluorophenylacetamides with the moiety of statins and assess their phenotypic activity against models of and infection besides exploring their genotoxicity safety profile.
None of the sodium salt compounds presented antiparasitic activity and two acetated compounds displayed mild anti- effect. Against , the acetate halogenated hybrids showed moderate effect against both parasite forms relevant for human infection. Despite the considerable trypanosomicidal activity, the brominated compound revealed a genotoxic profile impairing future testing.
However, the chlorinated derivative was the most promising compound with chemical and biological profitable characteristics, without presenting genotoxicity , being eligible for further experiments.
他汀类药物具有多种多效性作用,包括抗炎和抗菌反应。A,α-二氟苯乙酰胺是双氯芬酸的类似物,是有效的临床前抗炎非甾体药物。基于药效基团部分组合的分子杂交已成为开发旨在获得多靶点配体的新候选药物的一种策略。
考虑到苯乙酰胺的抗炎活性以及他汀类药物对专性细胞内寄生虫的潜在杀菌作用,本研究的目的是合成八种新的α,α-二氟苯乙酰胺与他汀类药物部分的杂合化合物,并评估它们对 和 感染模型的表型活性,同时探索它们的遗传毒性安全性概况。
没有一种钠盐化合物具有抗寄生虫活性,两种醋酸盐化合物显示出轻微的抗 作用。针对 ,醋酸盐卤代杂合物对与人类感染相关的两种寄生虫形式均显示出中等作用。尽管具有相当大的杀锥虫活性,但溴化化合物显示出遗传毒性概况,影响了未来的 测试。
然而,氯化衍生物是最有前途的化合物,具有化学和生物学上有益的特性,没有遗传毒性 ,有资格进行进一步的 实验。