Halogenated Antimicrobial Agents to Combat Drug-Resistant Pathogens

抗菌剂 抗生素 抗生素耐药性 卤素 抗药性 药品 组合化学 化学 药理学 生物 微生物学 有机化学 烷基
作者
Olajide Sunday Faleye,Bharath Reddy Boya,Jin Hyung Lee,Inho Choi,Jintae Lee
出处
期刊:Pharmacological Reviews [American Society for Pharmacology & Experimental Therapeutics]
卷期号:76 (1): 90-141 被引量:5
标识
DOI:10.1124/pharmrev.123.000863
摘要

Antimicrobial resistance presents us with a potential global crisis as it undermines the abilities of conventional antibiotics to combat pathogenic microbes. The history of antimicrobial agents is replete with examples of scaffolds containing halogens. In this review, we discuss the impacts of halogen atoms in various antibiotic types and antimicrobial scaffolds and their modes of action, structure-activity relationships, and the contributions of halogen atoms in antimicrobial activity and drug resistance. Other halogenated molecules, including carbohydrates, peptides, lipids, and polymeric complexes, are also reviewed, and the effects of halogenated scaffolds on pharmacokinetics, pharmacodynamics, and factors affecting antimicrobial and antivirulence activities are presented. Furthermore, the potential of halogenation to circumvent antimicrobial resistance and rejuvenate impotent antibiotics is addressed. This review provides an overview of the significance of halogenation, the abilities of halogens to interact in biomolecular settings and enhance pharmacological properties and their potential therapeutic usages in preventing a post-antibiotic era. Significance Statement Antimicrobial resistance and the increasing impotence of antibiotics are critical threats to global health. The roles and importance of halogens atoms in antimicrobial drug scaffolds have been established, but comparatively little is known of their pharmacological impacts on drug resistance and antivirulence activities. This review is the first to extensively evaluate the roles of halogen atoms in various antibiotic classes and pharmacological scaffolds and to provide an overview of their abilities to overcome antimicrobial resistance.
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