Outer Membrane Proteins and Efflux Pumps Mediated Multi-Drug Resistance in : Rising Threat to Antimicrobial Therapy.

ACS Infect Dis

Nitte (Deemed to be University), Nitte University Centre for Science Education and Research, Department of Bio & Nano Technology, Paneer Campus, Deralakatte, Mangalore-575018, India.

Published: November 2023

AI Article Synopsis

  • Despite significant advances in antibiotic treatment, drug-resistant pathogens continue to cause high mortality and economic losses worldwide, primarily due to multi-drug and extensive drug resistance.
  • The interplay between efflux systems and outer membrane proteins (OMPs) is crucial for understanding the mechanisms behind this drug resistance.
  • Developing targeted strategies and policies at various levels is essential to combat the rise of drug resistance effectively.

Article Abstract

Despite colossal achievements in antibiotic therapy in recent decades, drug-resistant pathogens have remained a leading cause of death and economic loss globally. One such WHO-critical group pathogen is . The extensive and inappropriate treatments for infections have led from multi-drug resistance (MDR) to extensive drug resistance (XDR). The synergy between efflux-mediated systems and outer membrane proteins (OMPs) may favor MDR in . Differential expression of the efflux system and OMPs (influx) and positional mutations are the factors that can be correlated to the development of drug resistance. Insights into the mechanism of influx and efflux of antibiotics can aid in developing a structurally stable molecule that can be proficient at escaping from the resistance loops in . Understanding the strategic responsibilities and developing policies to address the surge of drug resistance at the national, regional, and global levels are the needs of the hour. In this Review, we attempt to aggregate all the available research findings and delineate the resistance mechanisms by dissecting the involvement of OMPs and efflux systems. Integrating major OMPs and the efflux system's differential expression and positional mutation in may provide insight into developing strategic therapies for one health application.

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Source
http://dx.doi.org/10.1021/acsinfecdis.3c00408DOI Listing

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