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Updated: Jun 11, 2025

Author Spotlight: Advancing Antibiotic Resistance Research Using an Efflux-Deficient Bacterial Strain and a Single-Copy Gene Expression System
Published on: January 5, 2024
Understanding the mechanisms of antimicrobial resistance and potential therapeutic approaches against the
Vishwani Jamwal1,2, Tashi Palmo1,2, Kuljit Singh1,2
1Infectious Diseases Division, CSIR-Indian Institute of Integrative Medicine Jammu 180001 India singh.kuljit@iiim.res.in.
Abstract:
Globally, the emergence of anti-microbial resistance in pathogens has become a serious threat to human health and well-being. Infections caused by drug-resistant microorganisms in hospitals are associated with increased morbidity, mortality, and healthcare costs. Acinetobacter baumannii is a Gram-negative bacterium belonging to the ESKAPE group and is widely associated with nosocomial infections. It persists in hospitals and survives antibiotic treatment, prompting acute infections such as urinary tract infections, pneumonia, bacteremia, meningitis, and wound-related infections. An innovation void in drug discovery and the lack of new therapeutic measures against A. baumannii continue to afflict infection control against the rising drug-resistant cases. The emergence of drug-resistant A. baumannii strains has also led to the incessant collapse of newly discovered antibiotics. Therefore exploring novel strategies is requisite to give impetus to A. baumannii drug discovery. The present review discusses the bacterial research community's efforts in the field of A. baumannii, focusing on the strategies adapted to identify potent scaffolds and novel targets to bolster and diversify the chemical space available for drug discovery. Firstly, we have discussed existing chemotherapy and various anti-microbial resistance mechanisms in A. baumannii bacterial strains. Next, we elaborate on multidisciplinary approaches and strategies that may be the way forward to combat the current menace caused by the drug-resistant A. baumannii strains. The review highlights the recent advances in drug discovery, including combinational therapy, high-throughput screening, drug repurposing, nanotechnology, and anti-microbial peptides, which are imperative tools to fight bacterial pathogens in the future.
Insights
Antimicrobial resistance in Acinetobacter baumannii poses a global health threat. This review explores novel strategies, including nanotechnology and antimicrobial peptides, to combat drug-resistant infections and advance Acinetobacter baumannii drug discovery.
Area of Science:
- Microbiology
- Infectious Diseases
- Drug Discovery
Background:
- Antimicrobial resistance (AMR) in pathogens is a critical global health concern.
- Acinetobacter baumannii, an ESKAPE pathogen, causes severe nosocomial infections and exhibits resistance to antibiotics.
- A lack of novel therapeutics and innovation voids hinder effective treatment of A. baumannii infections.
Purpose of the Study:
- To review current efforts in combating drug-resistant Acinetobacter baumannii.
- To explore novel strategies and targets for Acinetobacter baumannii drug discovery.
- To discuss multidisciplinary approaches to overcome antimicrobial resistance.
Main Methods:
- Review of existing chemotherapy and antimicrobial resistance mechanisms in A. baumannii.
- Elaboration on multidisciplinary strategies for combating drug-resistant strains.
- Highlighting recent advances in drug discovery approaches.
Main Results:
- Discussion of bacterial research community efforts in identifying potent scaffolds and novel targets.
- Analysis of challenges posed by drug-resistant A. baumannii strains.
- Identification of emerging therapeutic avenues.
Conclusions:
- Novel strategies are essential to bolster and diversify drug discovery for Acinetobacter baumannii.
- Combinational therapy, high-throughput screening, drug repurposing, nanotechnology, and antimicrobial peptides are key future tools.
- Continued research and multidisciplinary approaches are imperative to combat A. baumannii infections.
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