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阿扎胞苷和葡甲胺锑对利什曼原虫的抗利什曼原虫潜力:计算机预测和体外分析。

Antileishmanial potentials of azacitidine and along with meglumine antimoniate on Leishmania major: In silico prediction and in vitro analysis.

机构信息

Research Center for Hydatid Disease in Iran, Kerman University of Medical Sciences, Kerman, Iran.

Leishmaniasis Research Center, Kerman University of Medical Sciences, Kerman, Iran.

出版信息

PLoS One. 2023 Sep 8;18(9):e0291321. doi: 10.1371/journal.pone.0291321. eCollection 2023.

Abstract

This study aimed to investigate the in vitro and in silico antileishmanial activity of azacitidine (AZA) on Leishmania major promastigotes and amastigotes. The in silico method was used to evaluate the possibility of the interaction of AZA into the binding pocket of inducible nitric oxide synthase (iNOS), a leading defensive oxidative metabolite. Following that, in vitro anti-promastigote, and anti-amastigote activity of AZA was determined using an MTT assay and a macrophage model, respectively. Cytotoxic effects of AZA and meglumine antimoniate (MA) were also assessed by MTT assay on murine macrophages. All experiments were performed in triplicate. The results showed that AZA interacted with Ser133, Gln134, and Lys13 amino acids of iNOS, and the molecular docking score was obtained at -241.053 kcal/mol. AZA in combination with MA significantly (P<0.001) inhibited the growth rate of nonclinical promastigote (IC50 247.6±7.3 μM) and 8.5-fold higher of clinical intramacrophage amastigote stage (29.8±5.3 μM), compared to the untreated group. A significant upsurge of Th1 subsets and transcription genes and a meaningful decline in Th2 cytokines subclasses at the equivalent concentrations of AZA and MA was observed (P<0.001). The apoptosis effect of AZA along with MA was significantly induced on L. major in a dose-dependent manner (P<0.001). The present study demonstrated that AZA possesses antileishmanial activity in in vitro and in silico models. However, AZA combined with MA was more effective than AZA alone in inhibiting the growth rate of promastigotes and amastigotes of L. major. This study indicates that AZA in combination with MA demonstrated a potent antileishmanial mechanism, promoting immune response and enhancing an immunomodulatory role toward the Th1 pathway. This experimental study is a basic study for applying more knowledge about the mechanisms of AZA along with MA in animal models in the future.

摘要

这项研究旨在研究阿扎胞苷(AZA)对大滋养体和无鞭毛体的体外和计算机抗利什曼原虫活性。使用计算机方法来评估 AZA 进入诱导型一氧化氮合酶(iNOS)结合口袋的可能性,iNOS 是一种主要的防御氧化代谢物。随后,使用 MTT 测定法测定 AZA 的体外抗前鞭毛体和抗无鞭毛体活性,并分别使用巨噬细胞模型测定 AZA 的体外抗无鞭毛体活性。通过 MTT 测定法还评估了 AZA 和葡甲胺锑的细胞毒性作用对鼠巨噬细胞。所有实验均重复进行了三次。结果表明,AZA 与 iNOS 的 Ser133、Gln134 和 Lys13 氨基酸相互作用,并且分子对接评分达到-241.053 kcal/mol。与未处理组相比,AZA 与 MA 联合显著(P<0.001)抑制非临床前鞭毛体(IC50 247.6±7.3 μM)和 8.5 倍更高的临床巨噬细胞内无鞭毛体阶段(29.8±5.3 μM)的生长速度。在 AZA 和 MA 的等效浓度下,观察到 Th1 亚群和转录基因的显著增加以及 Th2 细胞因子亚类的明显下降(P<0.001)。AZA 与 MA 一起沿剂量依赖性方式在 L. major 中显著诱导凋亡作用(P<0.001)。本研究表明,AZA 在体外和计算机模型中具有抗利什曼原虫活性。然而,与 AZA 单独使用相比,AZA 与 MA 联合使用在抑制大滋养体和无鞭毛体的生长速度方面更有效。本研究表明,AZA 与 MA 联合显示出强大的抗利什曼原虫机制,促进免疫反应并增强对 Th1 途径的免疫调节作用。这项实验研究是为将来在动物模型中应用更多关于 AZA 与 MA 机制的知识而进行的基础研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3dc3/10490874/9f9417e6606a/pone.0291321.g001.jpg

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