Prodigiosin Demonstrates Promising Antiviral Activity Against Dengue Virus and Zika Virus in In-silico Study

IF 3 Q2 CHEMISTRY, ANALYTICAL
Tanjilur Rahman, Mohammed Sajjad Hossain Bappi, Tanim Jabid Hossain
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Abstract

Dengue (DENV) and Zika virus (ZIKV), transmitted by Aedes mosquitoes, pose significant public health challenges. Effective treatments for these viruses remain elusive, highlighting the urgent need for new efficient antiviral therapies. This study explores prodigiosin, a microbial tripyrrole pigment, as an antiviral agent against both DENV and ZIKV employing advanced analytical approaches which integrate molecular docking, CASTp 3.0 validation and molecular dynamics (MD) simulations providing insights into molecular interactions at an atomic level. Prodigiosin exhibited favourable drug-likeness properties, meeting Lipinski's rule of five and demonstrating optimal physicochemical and pharmacokinetic characteristics according to Ghose's, Veber's, Egan's and Muegge's filters, essential for oral bioavailability. Absorption, Distribution, Metabolism, Excretion, and Toxicity profiling indicated high intestinal absorption, minimal risk for drug-drug interactions and a low toxicity profile, with no AMES toxicity, hepatotoxicity, or skin sensitization. Molecular docking revealed prodigiosin's strong binding affinities to NS5 methyltransferases of both DENV (−7.6 kcal/mol) and ZIKV (−7.7 kcal/mol) viruses, suggesting potential disruption of viral replication. Notably, prodigiosin's binding affinities were comparable to ribavirin-5'-triphosphate and chloroquine, known inhibitors of DENV and ZIKV, respectively. MD simulations confirmed stable and specific interactions with prodigiosin with low root-mean-square deviation values. Additional analyses, including root-mean-square fluctuation, radius of gyration and solvent-accessible surface area, indicated compact and stable complexes. These multi-parametric in-silico analytical strategies provide a novel perspective of prodigiosin as an antiviral agent, demonstrating its drug interactions at the molecular level. These promising results suggest that prodigiosin could serve as a broad-spectrum antiviral agent against both DENV and ZIKV, warranting further experimental validation for therapeutic development against flaviviral infections.

Abstract Image

在计算机研究中显示出对登革热病毒和寨卡病毒的抗病毒活性。
由伊蚊传播的登革热(DENV)和寨卡病毒(ZIKV)构成重大的公共卫生挑战。对这些病毒的有效治疗仍然难以捉摸,这突出了迫切需要新的有效的抗病毒治疗。本研究采用先进的分析方法,结合分子对接、CASTp 3.0验证和分子动力学(MD)模拟,在原子水平上深入了解分子相互作用,探索了微生物三吡罗色素prodigiosin作为DENV和ZIKV的抗病毒药物。Prodigiosin表现出良好的药物相似特性,符合Lipinski的五法则,并根据Ghose, Veber, Egan和Muegge的过滤器显示出最佳的物理化学和药代动力学特性,这对口服生物利用度至关重要。吸收、分布、代谢、排泄和毒性分析表明,肠道吸收高,药物-药物相互作用风险最小,毒性低,无AMES毒性、肝毒性或皮肤致敏。分子对接发现,prodigiosin与DENV (-7.6 kcal/mol)和ZIKV (-7.7 kcal/mol)病毒的NS5甲基转移酶具有较强的结合亲和力,提示可能破坏病毒复制。值得注意的是,prodigiosin的结合亲和力与已知的DENV和ZIKV抑制剂利巴韦林-5'-三磷酸和氯喹相当。MD模拟证实了与prodigiosin稳定而特异的相互作用,具有较低的均方根偏差值。其他分析,包括均方根波动、旋转半径和溶剂可及表面积,表明了紧凑和稳定的配合物。这些多参数的芯片分析策略提供了一种新的视角来研究芥子酸作为抗病毒药物,并在分子水平上展示了其药物相互作用。这些有希望的结果表明,芥子红素可以作为一种广谱抗病毒药物来对抗DENV和ZIKV,这需要进一步的实验验证来开发针对黄病毒感染的治疗方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
4.60
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