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通过分子对接、分子动力学模拟和药物代谢动力学/药物毒性预测分析评估肉桂化合物对幽门螺杆菌的疗效。

Assessing the efficacy of cinnamon compounds against H. pylori through molecular docking, MD Simulations and ADMET analyses.

作者信息

Sarwar Muhammad Farhan, Zahra Afnan, Awan Mudassar Fareed, Ali Sajed, Shafiq Muhammad, Muzammil Khursheed

机构信息

Department of Biotechnology, Knowledge Unit of Science (KUSC), University of Management and Technology Sialkot, Sialkot, Pakistan.

Department of Chemistry, Government College for Women University Sialkot (GCWUS), Sialkot, Pakistan.

出版信息

PLoS One. 2024 Mar 11;19(3):e0299378. doi: 10.1371/journal.pone.0299378. eCollection 2024.

Abstract

Antibiotics are the drugs that are used for the management of microbial diseases. However, these conventional synthetic drugs can harmfully affect the human health. Since phytochemicals are extracted from natural sources and, are hence relatively safer for human health, they are the enticing alternatives in this regard. Cinnamon is also one of those plants which is being employed as herbal medication for centuries against certain microbial infections due its significant therapeutic effectiveness. A well-known pathogenic bacterium called H. pylori causes a wide range of illnesses in human body. This pathogen's pathogenicity is determined by certain virulent proteins. In this study, some of such proteins, which included virB4, virB8, and virB9 were selected to evaluate the therapeutic efficiency of cinnamon compounds. These proteins were identified in different isolates of H. pylori. The structural modelling of all these proteins were performed initially in order to proceed them for molecular docking analysis. While, the docking studies illustrated that one of the cinnamon compounds, cinnamyl acetate, showed significant binding interactions with virB4 and virB9. However, benzyl benzoate which is another cinnamon compound, docked well with virB8. Afterwards, the MD simulations were incorporated to explore the interaction motions and structural stability of all the docked complexes. In this regard, the resultant maps of Bfactor, eigenvalues and elastic network model, among other factors ensured the structural stabilities of all the respective complexes. After these crucial estimations, benzyl benzoate and cinnamyl acetate underwent the ADMET investigation to assess their pharmacokinetic characteristics. SwissADME and ADMETLab 2.0 server were employed for this investigation. The compiled findings these servers revealed that both, benzyl benzoate and cinnamyl acetate, exhibited a significant level of pharmacokinetic and drug-likeness conformity.

摘要

抗生素是用于治疗微生物疾病的药物。然而,这些传统的合成药物会对人体健康产生有害影响。由于植物化学物质是从天然来源提取的,因此对人体健康相对更安全,它们是这方面诱人的替代品。肉桂也是那些几个世纪以来一直被用作草药治疗某些微生物感染的植物之一,因为它具有显著的治疗效果。一种名为幽门螺杆菌的著名致病细菌会在人体中引发多种疾病。这种病原体的致病性由某些毒力蛋白决定。在这项研究中,选择了其中一些蛋白,包括virB4、virB8和virB9,来评估肉桂化合物的治疗效果。这些蛋白在不同的幽门螺杆菌分离株中被鉴定出来。首先对所有这些蛋白进行结构建模,以便进行分子对接分析。同时,对接研究表明,肉桂化合物之一乙酸肉桂酯与virB4和virB9表现出显著的结合相互作用。然而,另一种肉桂化合物苯甲酸苄酯与virB8对接良好。之后,进行分子动力学模拟以探索所有对接复合物的相互作用运动和结构稳定性。在这方面,B因子、特征值和弹性网络模型等结果图确保了所有相应复合物的结构稳定性。经过这些关键评估后,对苯甲酸苄酯和乙酸肉桂酯进行了ADMET研究,以评估它们的药代动力学特征。使用SwissADME和ADMETLab 2.0服务器进行这项研究。这些服务器汇总的结果表明,苯甲酸苄酯和乙酸肉桂酯都表现出显著水平的药代动力学和类药物一致性。

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