Computational Studies and Antimicrobial Activity of 1-(benzo[d]oxazol-2- yl)-3,5-diphenylformazan Derivatives.

IF 1.5 4区 医学 Q4 CHEMISTRY, MEDICINAL Current computer-aided drug design Pub Date : 2024-01-01 DOI:10.2174/1573409919666230703103135
Mazen Almehmadi, Ahad Amer Alsaiari, Mamdouh Allahyani, Abdulaziz Alsharif, Abdulelah Aljuaid, Supriyo Saha, Mohammad Asif
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Abstract

Background: Due to the biological importance of the benzoxazole derivatives, some 1- (benzo[d]oxazol-2-yl)-3,5-diphenyl-formazans 4a-f were synthesized and screened for in-silico studies and in-vitro antibacterial activity.

Methods: The benzo[d]oxazole-2-thiol (1) was prepared by reacting with 2-aminophenol and carbon disulfide in the presence of alcoholic potassium hydroxide. Then 2-hydrazinylbenzo[d] oxazole (2) was synthesized from the reaction of compound 1 with hydrazine hydrate in the presence of alcohol. Compound 2 was reacted with aromatic aldehydes to give Schiff base, 2-(2- benzylidene-hydrazinyl)benzo[d]oxazole derivatives 3a-f. The title compounds, formazan derivatives 4a-f, were prepared by a reaction of benzene diazonium chloride. All compounds were confirmed by their physical data, FTIR, 1H-NMR, and 13CNMR spectral data. All the prepared title compounds were screened for in-silico studies and in-vitro antibacterial activity on various microbial strains.

Results: Molecular docking against the 4URO receptor demonstrated that molecule 4c showed a maximum dock score of (-) 8.0 kcal/mol. MD simulation data reflected the stable ligand-receptor interaction. As per MM/PBSA analysis, the maximum free binding energy of (-) 58.831 kJ/mol was exhibited by 4c. DFT calculation data confirmed that most of the molecules were soft molecules with electrophilic nature.

Conclusion: The synthesized molecules were validated using molecular docking, MD simulation, MMPBSA analysis, and DFT calculation. Among all the molecules, 4c showed maximum activity. The activity profile of the synthesized molecules against tested micro-organisms was found to be 4c>4b>4a>4e>4f>4d.

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1-(苯并[d]恶唑-2-基)-3,5-二苯基甲酰肼衍生物的计算研究和抗菌活性。
背景:鉴于苯并恶唑衍生物在生物学上的重要性,本研究合成了一些 1-(苯并[d]恶唑-2-基)-3,5-二苯基甲酰肼 4a-f,并对其进行了室内研究和体外抗菌活性筛选:苯并[d]恶唑-2-硫醇(1)是由 2-氨基苯酚和二硫化碳在氢氧化钾酒精存在下反应制备的。然后,化合物 1 与水合肼在酒精存在下反应合成 2-肼基苯并[d]恶唑(2)。化合物 2 与芳香醛反应生成希夫碱、2-(2-亚苄基肼基)苯并[d]恶唑衍生物 3a-f。标题化合物,即甲状腺衍生物 4a-f 是通过苯重氮酰氯反应制备的。所有化合物的物理数据、傅立叶变换红外光谱、1H-NMR 和 13CNMR 光谱数据均得到证实。对所有制备的标题化合物进行了体内研究和体外抗菌活性筛选:结果:与 4URO 受体的分子对接表明,分子 4c 的最大对接分数为 (-) 8.0 kcal/mol。MD 模拟数据反映了配体与受体之间稳定的相互作用。根据 MM/PBSA 分析,4c 的最大自由结合能为 (-) 58.831 kJ/mol。DFT 计算数据证实,大多数分子都是具有亲电性质的软分子:利用分子对接、MD 模拟、MMPBSA 分析和 DFT 计算对合成的分子进行了验证。在所有分子中,4c 的活性最高。合成分子对测试微生物的活性曲线为 4c>4b>4a>4e>4f>4d.
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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来源期刊
Current computer-aided drug design
Current computer-aided drug design 医学-计算机:跨学科应用
CiteScore
3.70
自引率
5.90%
发文量
46
审稿时长
>12 weeks
期刊介绍: Aims & Scope Current Computer-Aided Drug Design aims to publish all the latest developments in drug design based on computational techniques. The field of computer-aided drug design has had extensive impact in the area of drug design. Current Computer-Aided Drug Design is an essential journal for all medicinal chemists who wish to be kept informed and up-to-date with all the latest and important developments in computer-aided methodologies and their applications in drug discovery. Each issue contains a series of timely, in-depth reviews, original research articles and letter articles written by leaders in the field, covering a range of computational techniques for drug design, screening, ADME studies, theoretical chemistry; computational chemistry; computer and molecular graphics; molecular modeling; protein engineering; drug design; expert systems; general structure-property relationships; molecular dynamics; chemical database development and usage etc., providing excellent rationales for drug development.
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