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Broadly Defined Antibiotic Adjuvants for Pseudomonas aeruginosa
Zhihan Chen1, Yufan Li1, Yuanlin Song1,2,3,4
1Department of Pulmonary Medicine, Shanghai Key Laboratory of Lung Inflammation and Injury, Zhongshan Hospital, Shanghai Respiratory Research Institute, Fudan University, Shanghai, China, fudan.edu.cn.
Abstract:
Pseudomonas aeruginosa is a widely distributed opportunistic pathogen with multiple drug resistance, making it particularly challenging to treat in lower respiratory tract infections. Its resistance mechanisms are complex, including low outer-membrane permeability, efflux pump overexpression, biofilm formation, and quorum sensing (QS) activation. Antibiotic adjuvants, as a strategy to enhance antibiotic efficacy and rapidly mitigate antibiotic resistance, have garnered significant attention. However, the traditional definition of antibiotic adjuvants typically refers to compounds like tazobactam, which lack inherent antibacterial activity but enhance the effects of antibiotics. This narrow definition emphasizes specific strategies to overcome P. aeruginosa resistance while excluding many promising approaches that enhance antibiotic activity through specific or nonspecific mechanisms. In this review, antibiotic adjuvants are defined as compounds coadministered or covalently linked with antibiotics to enhance the activity of the antibiotics. This review summarizes progress in research on "broadly defined antibiotic adjuvants" targeting P. aeruginosa and focuses on the following strategies: (1) enhancing outer-membrane permeability to facilitate antibiotic entry into the bacterial cell; (2) efflux pump inhibitors (EPIs) to inhibit the bacterial efflux of antibiotics from the periplasm; (3) the "Trojan Horse" strategy, utilizing siderophores or their analogs to deliver antibiotics into bacteria; (4) quorum sensing inhibitors (QSIs), which weaken P. aeruginosa pathogenicity and resistance by blocking QS signaling pathways; and (5) activation of persister cells to enhance the bactericidal effects of antibiotics on persister cells in biofilm, facilitating the elimination of P. aeruginosa in chronic infections. These strategies provide a theoretical foundation for developing novel antibiotic adjuvants, which may contribute to addressing the challenge of P. aeruginosa resistance and improving clinical treatment outcomes.
Insights
This review explores broadly defined antibiotic adjuvants to combat drug-resistant Pseudomonas aeruginosa infections. These adjuvants enhance antibiotic effectiveness by targeting resistance mechanisms like efflux pumps and biofilm formation, offering new treatment strategies.
Area of Science:
- Microbiology and Infectious Diseases
- Pharmacology and Drug Discovery
Background:
- Pseudomonas aeruginosa is a multidrug-resistant opportunistic pathogen causing challenging lower respiratory tract infections.
- Established resistance mechanisms include low outer-membrane permeability, efflux pump overexpression, biofilm formation, and quorum sensing (QS) activation.
- Traditional antibiotic adjuvants lack antibacterial activity but enhance antibiotic effects, a definition excluding many promising strategies.
Purpose of the Study:
- To review research on broadly defined antibiotic adjuvants targeting Pseudomonas aeruginosa.
- To explore strategies that enhance antibiotic activity against P. aeruginosa resistance mechanisms.
Main Methods:
- Review of scientific literature on antibiotic adjuvants and P. aeruginosa resistance.
- Categorization of adjuvant strategies based on their mechanism of action.
- Focus on five key strategies: enhancing outer-membrane permeability, efflux pump inhibition, siderophore-mediated delivery, quorum sensing inhibition, and persister cell activation.
Main Results:
- Broadly defined antibiotic adjuvants encompass compounds co-administered or linked with antibiotics to boost efficacy.
- Five distinct strategies show promise in overcoming P. aeruginosa resistance.
- These strategies target specific bacterial vulnerabilities to improve antibiotic treatment outcomes.
Conclusions:
- Broadly defined antibiotic adjuvants offer a promising avenue for combating multidrug-resistant P. aeruginosa.
- Targeting mechanisms like outer-membrane permeability, efflux pumps, QS, and persister cells can enhance antibiotic effectiveness.
- Further development of these adjuvant strategies may significantly improve clinical outcomes for P. aeruginosa infections.
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