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合成查耳酮对巴西副球孢子菌的计算机模拟和体外评估

In Silico and in Vitro Evaluation of Synthetic Chalcones against Paracoccidioides brasiliensis.

作者信息

da Conceição Pereira Giuliano, Monteiro Jessica Raquel B, da Costa Felipe Antonio Carvalho, de Oliveira Marcelo Kurgonas, Farias Eduardo Vieiras, Carnielli-Queiroz Lorena, Taborda Carlos Pelleschi, Coitinho Juliana Barbosa, Dos Santos Reginaldo Bezerra, Kitagawa Rodrigo Rezende, Ribeiro Gonçalves Rita de Cássia

机构信息

Graduate Program of Pharmaceutical Sciences, Health Sciences Center, Federal University of Espírito Santo, Avenida Marechal Campos, 1468, Maruípe, Vitória 29047-105, Brazil.

Department of Chemistry, Exact Sciences Center, Federal University of Espírito Santo, Avenida Fernando Ferrari, 514, Goiabeiras, Vitória 29075-910, Brazil.

出版信息

Chem Pharm Bull (Tokyo). 2025;73(9):772-782. doi: 10.1248/cpb.c25-00044.

Abstract

Paracoccidioidomycosis (PCM) is an infectious disease caused by dimorphic fungi of the Paracoccidioides genus and causes a series of discomforts in affected patients. This work aimed to evaluate the antifungal potential of synthetic chalcones against Paracoccidioides brasiliensis (Pb) and to determine in silico possible therapeutic targets. An in silico evaluation of a database of 21 synthesized chalcones was carried out based on pharmacokinetic parameters, enzymatic inhibition, Tanimoto similarity, and the prediction of the spectrum of activity by PASS (prediction of activity spectra of substances). The most viable chalcones from the previous evaluation were selected for the measurement of minimum inhibitory concentration (MIC) against Pb and for cytotoxicity assays pre- and post-metabolization using HEPG2 cells. After in silico evaluation, the compounds 4, 11, 12, 20, and 21 were selected to carry out the molecular docking and in vitro tests. In the docking studies, multiple hydrophobic and polar intermolecular interactions were observed, such as hydrogen bonds, with emphasis on compound 20 in the active site of thioredoxin, where it made 4 hydrogen bonds with the residues Gln43, Ala36, and Thr38. In vitro testing revealed antifungal activity, with the MICs ranging from 32 to 128 μg/mL. In cytotoxicity assays, the 5 compounds exhibited reduced IC values (5.51-14.85 μg/mL pre-metabolization and 10.48-35.4 μg/mL post-metabolization). The compounds 4, 11, 12, 20, and 21 have shown favorable predictions of pharmacokinetic characteristics and distinct actions compared to conventional medications, as well as antifungal activity with less toxicity after metabolization, making them the best candidates for further studies.

摘要

副球孢子菌病(PCM)是一种由副球孢子菌属的双相真菌引起的传染病,会给受影响的患者带来一系列不适。这项工作旨在评估合成查耳酮对巴西副球孢子菌(Pb)的抗真菌潜力,并通过计算机模拟确定可能的治疗靶点。基于药代动力学参数、酶抑制、Tanimoto相似度以及通过PASS(物质活性谱预测)对活性谱的预测,对21种合成查耳酮的数据库进行了计算机模拟评估。从先前的评估中选择最具可行性的查耳酮,用于测定对Pb的最低抑菌浓度(MIC)以及使用HEPG2细胞进行代谢前和代谢后的细胞毒性测定。经过计算机模拟评估后,选择化合物4、11、12、20和21进行分子对接和体外试验。在对接研究中,观察到多种疏水和极性分子间相互作用,如氢键,其中化合物20在硫氧还蛋白的活性位点表现突出,它与Gln43、Ala36和Thr38残基形成了4个氢键。体外试验显示出抗真菌活性,MIC范围为32至128μg/mL。在细胞毒性测定中,这5种化合物的IC值降低(代谢前为5.51 - 14.85μg/mL,代谢后为10.48 - 35.4μg/mL)。与传统药物相比,化合物4、11、12、20和21显示出有利的药代动力学特征预测和不同的作用,以及代谢后较低的毒性抗真菌活性,使其成为进一步研究的最佳候选物。

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