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基于苯并二酮的钴(II)/(III)配合物的疏水性和离子性对与牛血清白蛋白结合的影响。

Impacts of hydrophobicity and ionicity of phendione-based cobalt(II)/(III) complexes on binding with bovine serum albumin.

机构信息

Department of Physical Chemistry, School of Chemical Sciences, University of Madras, Chennai, Tamil Nadu, India.

Department of Applied Science and Technology, Anna University, Chennai, Tamil Nadu, India.

出版信息

J Biomol Struct Dyn. 2020 Apr;38(7):2057-2067. doi: 10.1080/07391102.2019.1624195. Epub 2019 May 30.

Abstract

For efficient designing of metallodrugs, it is imperative to analyse the binding affinity of those drugs with drug-carrying serum albumins to comprehend their structure-activity correlation for biomedical applications. Here, cobalt(II) and cobalt(III) complexes comprising three phendione ligands, [Co(phendione)]Cl () and [Co(phendione)]Cl (), where, phendione = 1,10-phenanthroline-5,6-dione, has been chosen to contrast the impact of their hydrophobicity and ionicity on binding with bovine serum albumin (BSA) through spectrophotometric titrations. The attained hydrophobicity values using octanol/water partition coefficient method manifested that complex is more hydrophobic than complex , which could be attributed to lesser charge on its coordination sphere. The interaction of complexes and with BSA using steady state fluorescence studies revealed that these complexes quench the intrinsic fluorescence of BSA through static mechanism, and the extent of quenching and binding parameters are higher for complex . Further thermodynamics of BSA-binding studies revealed that complexes and interact with BSA through hydrophobic and hydrogen bonding/van der Waals interactions, respectively. Further, UV-visible absorption, circular dichroism and synchronous fluorescence studies confirmed the occurrence of conformational and microenvironmental changes in BSA upon binding with complexes and . Molecular docking studies have also shown that complex has a higher binding affinity towards BSA as compared to complex . This sort of modification of ionicity and hydrophobicity of metal complexes for getting desirable binding mode/strength with drug transporting serum albumins will be a promising pathway for designing active and new kind of metallodrugs for various biomedical applications.Communicated by Ramaswamy H. Sarma.

摘要

为了高效设计金属药物,分析这些药物与载药血清白蛋白的结合亲和力以理解其结构-活性关系对于生物医学应用至关重要。在这里,选择了包含三个邻苯二酮配体的钴(II)和钴(III)配合物[Co(phendione)]Cl ()和[Co(phendione)]Cl (),其中phendione = 1,10-菲咯啉-5,6-二酮,通过分光光度滴定法对比它们的疏水性和离子性对与牛血清白蛋白(BSA)结合的影响。使用辛醇/水分配系数法获得的疏水性值表明,配合物 比配合物 更疏水,这可以归因于其配位球上的电荷较少。使用稳态荧光研究配合物 与 BSA 的相互作用表明,这些配合物通过静态机制猝灭 BSA 的固有荧光,并且配合物 猝灭和结合参数的程度更高。进一步的 BSA 结合热力学研究表明,配合物 和 分别通过疏水作用和氢键/范德华相互作用与 BSA 相互作用。此外,紫外可见吸收、圆二色性和同步荧光研究证实了 BSA 在与配合物 结合时构象和微环境的变化。分子对接研究还表明,与配合物 相比,配合物 对 BSA 具有更高的结合亲和力。这种改变金属配合物的离子性和疏水性以获得与药物转运血清白蛋白所需的结合模式/强度的方法,将是设计各种生物医学应用的活性和新型金属药物的有前途的途径。由 Ramaswamy H. Sarma 传达。

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