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新型含荧光传感器的铁螯合剂的设计、合成、物理化学性质及评估

Design, synthesis, physicochemical properties, and evaluation of novel iron chelators with fluorescent sensors.

作者信息

Ma Yongmin, Luo Wei, Quinn Peter J, Liu Zudong, Hider Robert C

机构信息

Departments of Pharmacy, King's College London, Franklin-Wilkins Building, Stamford Street, London SE1 9NN, UK.

出版信息

J Med Chem. 2004 Dec 2;47(25):6349-62. doi: 10.1021/jm049751s.

Abstract

The synthesis of a range of novel 3-hydroxypyridin-4-ones and 3-hydroxypyran-4-ones linked with different coumarin substituents is described. These compounds have been developed in order to provide a series of molecular probes for the quantification of intracellular labile iron pools. An evaluation of the effect of iron(III) on fluorescence intensity was undertaken. Chelation of iron(III) causes quenching of fluorescence. The relationship between iron(III) concentration and the extent of fluorescence quenching indicates that the metal is chelated in a complex with a metal-to-ligand stoichiometry of 1:3. The fluorescence of hydroxypyridinone compounds was found to be more efficiently quenched by iron(III) than were the hydroxypyranones. The metal-to-ligand stoichiometry at which maximum quenching is observed was found to depend on the site at which coumarin is attached. The efficiency of fluorescence quenching by iron(III) is markedly influenced by solvent polarity and pH. The permeability of two representative fluorescent chelators across human erythrocyte ghost membranes was investigated. The rate of permeability for a series of probes was found to be related to the corresponding ClogP values.

摘要

描述了一系列与不同香豆素取代基相连的新型3-羟基吡啶-4-酮和3-羟基吡喃-4-酮的合成。开发这些化合物是为了提供一系列用于定量细胞内不稳定铁池的分子探针。对铁(III)对荧光强度的影响进行了评估。铁(III)的螯合导致荧光猝灭。铁(III)浓度与荧光猝灭程度之间的关系表明,金属以1:3的金属与配体化学计量比螯合形成配合物。发现羟基吡啶酮化合物的荧光比羟基吡喃酮更有效地被铁(III)猝灭。观察到最大猝灭时的金属与配体化学计量比取决于香豆素连接的位置。铁(III)对荧光猝灭的效率受到溶剂极性和pH的显著影响。研究了两种代表性荧光螯合剂在人红细胞血影膜上的通透性。发现一系列探针的通透速率与相应的ClogP值有关。

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