4.4 Article

Microbial esterases and ester prodrugs: An unlikely marriage for combating antibiotic resistance

期刊

DRUG DEVELOPMENT RESEARCH
卷 80, 期 1, 页码 33-47

出版社

WILEY
DOI: 10.1002/ddr.21468

关键词

antibiotic resistance; drug delivery; drug design; esterases; Mycobacterium tuberculosis; prodrugs

资金

  1. National Institute of General Medical Sciences [NIH 1 R15 GM110641-01A1]
  2. National Institutes of Health [GM110641-01A1, R15]

向作者/读者索取更多资源

The rise of antibiotic resistance necessitates the search for new platforms for drug development. Prodrugs are common tools for overcoming drawbacks typically associated with drug formulation and delivery, with ester prodrugs providing a classic strategy for masking polar alcohol and carboxylic acid functionalities and improving cell permeability. Ester prodrugs are normally designed to have simple ester groups, as they are expected to be cleaved and reactivated by a wide spectrum of cellular esterases. However, a number of pathogenic and commensal microbial esterases have been found to possess significant substrate specificity and can play an unexpected role in drug metabolism. Ester protection can also introduce antimicrobial properties into previously nontoxic drugs through alterations in cell permeability or solubility. Finally, mutation to microbial esterases is a novel mechanism for the development of antibiotic resistance. In this review, we highlight the important pathogenic and xenobiotic functions of microbial esterases and discuss the development and application of ester prodrugs for targeting microbial infections and combating antibiotic resistance. Esterases are often overlooked as therapeutic targets. Yet, with the growing need to develop new antibiotics, a thorough understanding of the specificity and function of microbial esterases and their combined action with ester prodrug antibiotics will support the design of future therapeutics.

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