摘要
天然和合成异羟肟酸及其衍生物的广泛应用有着悠久的传统。即使在今天,大量新设计的代表(从不同的基于单异羟肟酸酯的化合物到铁载体缀合物)被用于开发具有所需活性的潜在候选药物。由于这些化合物是有效的金属螯合剂,它们的生物学作用和作用以及它们的各种应用,例如在医学实践中,都与它们的金属络合直接相关。因此,了解金属配合物与异羟肟酸基配体的化学计量和结合模式、它们的热力学参数和溶液中的形态特征对于在上述任何领域工作的科学家都至关重要。本综述除了介绍一些可能影响这些有机配体的金属结合能力的因素外,还展示并总结了通常用于给出溶液平衡系统中形成的物质的化学计量、组成和稳定性的不同参数在可测量的浓度。通过使用溶液平衡数据对金属结合效率和各种异羟肟酸的选择性进行定量比较的可能性的讨论也是本出版物的重点。
关键词: 异羟肟酸作为配体、基于异羟肟酸盐的铁载体、形态模型、金属配合物稳定性、金属结合效率、金属离子选择性。
Current Medicinal Chemistry
Title:Factors Determining the Metal Ion Binding Ability and Selectivity of Hydroxamate-Based Compounds
Volume: 28 Issue: 35
关键词: 异羟肟酸作为配体、基于异羟肟酸盐的铁载体、形态模型、金属配合物稳定性、金属结合效率、金属离子选择性。
摘要:
There has been a long tradition for a broad spectrum of applications of both natural and synthetic hydroxamic acids and derivatives. Even nowadays, a huge number of newly designed representatives (from different monohydroxamate-based compounds to siderophore conjugates) are used to develop potential drug candidates with desired activities. Since these compounds are effective metal-chelating agents, their biological roles and actions as well as their various applications, e.g., in the medicinal practice, are all in direct correlation with their metal complexation. Consequently, the knowledge of the stoichiometry and binding modes of metal complexes with hydroxamic acid-based ligands, their thermodynamic parameters, and speciation profiles in solution are crucial for scientists working in any of the above-mentioned fields.
This review, in addition to presenting a few factors, which might affect the metal-binding capabilities of these organic ligands, displays and summarizes the different parameters typically used to give the stoichiometry, composition, and stability of the species formed in a solution equilibrium system in measurable concentration. Discussion of the possibilities for quantitative comparison of metal-binding effectivity and selectivity of various hydroxamic acids with each other by using solution equilibrium data is also the focus of this publication.
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Cite this article as:
Factors Determining the Metal Ion Binding Ability and Selectivity of Hydroxamate-Based Compounds, Current Medicinal Chemistry 2021; 28 (35) . https://dx.doi.org/10.2174/0929867328666210405123952
DOI https://dx.doi.org/10.2174/0929867328666210405123952 |
Print ISSN 0929-8673 |
Publisher Name Bentham Science Publisher |
Online ISSN 1875-533X |
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