构建特洛伊木马:用于治疗传染病的铁载体-药物偶联物。

Elzbieta Gumienna-Kontecka, Peggy L Carver
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引用次数: 4

摘要

抗菌素耐药性是一个重大的全球卫生问题,迫切需要解决这一危机的新方法。解决这个问题的“特洛伊木马”方法利用了病原体对铁的先天需求。铁载体是由病原体在细胞外分泌的低分子量铁螯合剂,用于清除铁。一旦与铁结合,铁-铁载体复合体就会返回病原体,运送铁宝藏。将抗菌剂“走私”到病原体中是通过将它们与铁载体连接以进行运输来实现的。虽然概念上很简单,但要跨越病原体细胞膜运输抗菌剂这一困难的障碍,需要数十年的努力。这篇综述讨论了关于铁载体结构、生产和运输的信息,以及在使用“特洛伊木马”方法开发新型药物的过程中,从铁载体偶联药物的成功和失败中获得的经验教训。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Building a Trojan Horse: Siderophore-Drug Conjugates for the Treatment of Infectious Diseases.

Antimicrobial resistance is a major global health problem, and novel approaches to solving this crisis are urgently required. The 'Trojan Horse' approach to solving this problem capitalizes on the innate need for iron by pathogens. Siderophores are low-molecular-weight iron chelators secreted extracellularly by pathogens to scavenge iron. Once bound to iron, the iron-siderophore complex returns to the pathogen to deliver its iron treasure. "Smuggling" antimicrobials into the pathogen is accomplished by linking them to siderophores for transport. While simple in concept, it has taken many decades of work to accomplish the difficult hurdle of transporting antimicrobials across the cell membranes of pathogens. This review discusses information learned about siderophore structure, production, and transport, and lessons learned from the successes and failures of siderophore-conjugate drugs evaluated during the development of novel agents using the 'Trojan horse' approach.

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