Spectrophotometric, quantum chemical and molecular docking investigations of 4H-1-benzopyran-derived Pd(II) complexes

IF 1.3 4区 化学 Q3 CHEMISTRY, MULTIDISCIPLINARY Bulletin of the Chemical Society of Ethiopia Pub Date : 2024-07-12 DOI:10.4314/bcse.v38i5.10
Tanu Arora, Km. Garima, Vikas Kumar, Saleem Javed, Mohammad Azam, Saud I. Al-Resayes, Nivedita Agnihotri
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Abstract

Transition metal complexes are an appealing target in the development of functional materials used frequently in industrial and therapeutic world. The quantum chemical investigations help to obtain a thorough comprehension of the interplay between complexes and biological materials. It necessitates sufficient modeling of chemical phenomena in the system, occasionally involving assistance of classical or semi-empirical computational techniques. Identification of the factors influencing complexes and their optimization is essential for electronic structure calculations and the relevant biochemical potential. The present study aims at correlating analytical studies with the theoretical behavior involving identification of structural features and bonding interactions of the three 4H-1-benzopyrans and their spectrophotometrically analyzed palladium complexes using DFT calculations to get acquainted with pharmacological profile of the complexes. FMO studies indicated a higher Egap for ligand in all the cases than their respective Pd(II) complexes. Furthermore, according to the other chemical descriptors, interaction between the ligands and respective complexes, cause chromogenic ligand’s chemical hardness to decrease indicating that the formed complexes have lower kinetic stability and more chemical reactivity. Efficiency of the studied ligands further was analyzed by molecular docking against the target proteins, of which 2O0U, a transferase exhibited mutual interactions with all the examined ligands. KEY WORDS: Palladium(II), 4H-1-benzopyran complexes, DFT, MEP, Molecular docking Bull. Chem. Soc. Ethiop. 2024, 38(5), 1311-1327.                                                          DOI: https://dx.doi.org/10.4314/bcse.v38i5.10                                                             
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4H-1-苯并吡喃衍生钯(II)配合物的分光光度法、量子化学和分子对接研究
过渡金属络合物是开发工业和治疗领域常用功能材料的一个极具吸引力的目标。量子化学研究有助于全面了解络合物与生物材料之间的相互作用。这就需要对系统中的化学现象进行充分建模,有时还需要借助经典或半经验计算技术。确定影响络合物的因素并对其进行优化,对于电子结构计算和相关生化潜力至关重要。本研究旨在将分析研究与理论行为联系起来,包括利用 DFT 计算确定三种 4H-1 苯并吡喃及其经分光光度法分析的钯配合物的结构特征和键合相互作用,从而了解配合物的药理特性。FMO 研究表明,在所有情况下,配体的 Egap 都高于各自的钯(II)配合物。此外,根据其他化学描述指标,配体和各自的配合物之间的相互作用导致发色配体的化学硬度降低,这表明所形成的配合物具有较低的动力学稳定性和更高的化学反应活性。通过与目标蛋白质的分子对接,进一步分析了所研究配体的效率,其中 2O0U (一种转移酶)与所有所研究配体都表现出了相互作用。关键词:钯(II)、4H-1-苯并吡喃配合物、DFT、MEP、分子对接 Bull.Chem.Soc.2024, 38(5), 1311-1327. DOI: https://dx.doi.org/10.4314/bcse.v38i5.10
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来源期刊
CiteScore
2.20
自引率
8.30%
发文量
113
审稿时长
6-12 weeks
期刊介绍: The Bulletin of the Chemical Society of Ethiopia (BCSE) is a triannual publication of the Chemical Society of Ethiopia. The BCSE is an open access and peer reviewed journal. The BCSE invites contributions in any field of basic and applied chemistry.
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