Spectroelectrochemical studies of TDMQ20: A potential drug against Alzheimer's disease - part 2 - Cu-complexes

IF 4.5 2区 化学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Martin Perez-Estebanez , Fabiola Olmo-Alonso , Natalia Baran , Martin Jönsson-Niedziółka , Magdalena Z. Wiloch
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Abstract

Alzheimer's Disease (AD) has been associated with the overproduction reactive radicals through the catalytic effect of β-amyloid peptide Cu(II) complexes. In this article, we performed electrochemical characterisation of copper complexed with TDMQ20, which has been suggested as a potential drug against AD, using electrochemistry and spectroelectrochemistry (SEC). Based on voltammetry, we showed that oxidation as well as reduction processes of Cu(II)-TDMQ20 are pH-sensitive. Simulations of the CVs allowed us to estimate the kinetic parameters of the initial quasi-reversible oxidation of Cu(II) and the subsequent internal electron transfer to the Cu(III) ion from the TDMQ20 ligand (k0 ≈ 18 s−1). The electrochemical mechanism of oxidation/reduction of Cu(II)-TDM20 complex was also studied using UV-VIS absorption spectroelectrochemistry (UV-VIS SEC). UV-VIS SEC measurements showed that after oxidation of the ligand through the reduction of the Cu(III), the Cu remains complexed with the TDMQ20, but the electrochemical properties of the complex are changed. Our findings contribute to a broader understanding of the redox activity of the Cu(II)-TDMQ20 complex at physiological pH, which is a crucial aspect in evaluating the potential clinical utility of this compound.
抗阿尔茨海默病潜在药物TDMQ20的光谱电化学研究——第二部分- cu络合物。
通过β-淀粉样肽Cu(II)复合物的催化作用,阿尔茨海默病(AD)与反应性自由基的过量产生有关。在本文中,我们利用电化学和光谱电化学(SEC)对铜与TDMQ20络合进行了电化学表征,TDMQ20被认为是一种潜在的抗AD药物。基于伏安法,我们发现Cu(II)-TDMQ20的氧化和还原过程对ph敏感。模拟的cv使我们能够估计Cu(II)的初始准可逆氧化和随后从TDMQ20配体(k0≈18 s-1)向Cu(III)离子的内部电子转移的动力学参数。采用紫外-可见吸收光谱电化学(UV-VIS SEC)研究了Cu(II)-TDM20配合物氧化还原的电化学机理。UV-VIS SEC测试表明,通过还原Cu(III)氧化配体后,Cu仍然与TDMQ20络合,但络合物的电化学性能发生了变化。我们的发现有助于更广泛地了解Cu(II)-TDMQ20复合物在生理pH下的氧化还原活性,这是评估该化合物潜在临床应用的关键方面。
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
Bioelectrochemistry
Bioelectrochemistry 生物-电化学
CiteScore
9.10
自引率
6.00%
发文量
238
审稿时长
38 days
期刊介绍: An International Journal Devoted to Electrochemical Aspects of Biology and Biological Aspects of Electrochemistry Bioelectrochemistry is an international journal devoted to electrochemical principles in biology and biological aspects of electrochemistry. It publishes experimental and theoretical papers dealing with the electrochemical aspects of: • Electrified interfaces (electric double layers, adsorption, electron transfer, protein electrochemistry, basic principles of biosensors, biosensor interfaces and bio-nanosensor design and construction. • Electric and magnetic field effects (field-dependent processes, field interactions with molecules, intramolecular field effects, sensory systems for electric and magnetic fields, molecular and cellular mechanisms) • Bioenergetics and signal transduction (energy conversion, photosynthetic and visual membranes) • Biomembranes and model membranes (thermodynamics and mechanics, membrane transport, electroporation, fusion and insertion) • Electrochemical applications in medicine and biotechnology (drug delivery and gene transfer to cells and tissues, iontophoresis, skin electroporation, injury and repair). • Organization and use of arrays in-vitro and in-vivo, including as part of feedback control. • Electrochemical interrogation of biofilms as generated by microorganisms and tissue reaction associated with medical implants.
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