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基于镓的抗感染药物:针对微生物铁摄取机制。

Gallium-based anti-infectives: targeting microbial iron-uptake mechanisms.

机构信息

Aridis Pharmaceuticals Inc., 5941 Optical Court, San Jose, CA 95138, USA.

出版信息

Curr Opin Pharmacol. 2013 Oct;13(5):707-16. doi: 10.1016/j.coph.2013.07.001. Epub 2013 Jul 19.

Abstract

Microbes have evolved elaborate iron-acquisition systems to sequester iron from the host environment using siderophores and heme uptake systems. Gallium(III) is structurally similar to iron(III), except that it cannot be reduced under physiological conditions, therefore gallium has the potential to serve as an iron analog, and thus an anti-microbial. Because Ga(III) can bind to virtually any complex that binds Fe(III), simple gallium salts as well as more complex siderophores and hemes are potential carriers to deliver Ga(III) to the microbes. These gallium complexes represent a new class of anti-infectives that is different in mechanism of action from conventional antibiotics. Simple gallium salts such as gallium nitrate, maltolate, and simple gallium siderophore complexes such as gallium citrate have shown good antibacterial activities. The most studied complex has been gallium citrate, which exhibits broad activity against many Gram negative bacteria at ∼1-5μg/ml MICs, strong biofilm activity, low drug resistance, and efficacy in vivo. Using the structural features of specific siderophore and heme made by pathogenic bacteria and fungi, researchers have begun to evaluate new gallium complexes to target key pathogens. This review will summarize potential iron-acquisition system targets and recent research on gallium-based anti-infectives.

摘要

微生物已经进化出复杂的铁获取系统,使用铁载体和血红素摄取系统从宿主环境中隔离铁。镓(III)在结构上与铁(III)相似,只是在生理条件下不能被还原,因此镓有可能作为铁的类似物,从而成为一种抗菌剂。由于 Ga(III)可以与几乎任何与 Fe(III)结合的复合物结合,因此简单的镓盐以及更复杂的铁载体和血红素都是将 Ga(III)递送到微生物的潜在载体。这些镓配合物代表了一类新型的抗感染药物,其作用机制与传统抗生素不同。简单的镓盐,如硝酸镓、酒石酸镓和简单的镓铁载体配合物,如柠檬酸镓,已显示出良好的抗菌活性。研究最多的复合物是柠檬酸镓,它在 1-5μg/ml MICs 时对许多革兰氏阴性菌表现出广泛的活性,对生物膜有很强的活性,耐药性低,体内疗效好。研究人员利用病原菌和真菌特有的铁载体和血红素的结构特征,开始评估新的镓配合物以靶向关键病原体。本综述将总结潜在的铁获取系统靶点和最近关于镓抗感染药物的研究。

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