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Current and novel therapies for management of Acinetobacter baumannii -associated pneumonia

鲍曼不动杆菌 肺炎 微生物学 医学 不动杆菌 重症监护医学 生物 抗生素 内科学 细菌 铜绿假单胞菌 遗传学
作者
Aye Mya Sithu Shein,Parichart Hongsing,O’Rorke Kevin Smith,Phatthranit Phattharapornjaroen,Kazuhiko Miyanaga,Longzhu Cui,Hitoshi Ishikawa,Mohan Amarasiri,Peter N. Monk,Anthony Kicic,Tanittha Chatsuwan,Daniel Pletzer,Paul G. Higgins,Shuichi Abe,Dhammika Leshan Wannigama
出处
期刊:Critical Reviews in Microbiology [Taylor & Francis]
卷期号:51 (3): 441-462 被引量:17
标识
DOI:10.1080/1040841x.2024.2369948
摘要

Acinetobacter baumannii is a common pathogen associated with hospital-acquired pneumonia showing increased resistance to carbapenem and colistin antibiotics nowadays. Infections with A. baumannii cause high patient fatalities due to their capability to evade current antimicrobial therapies, emphasizing the urgency of developing viable therapeutics to treat A. baumannii-associated pneumonia. In this review, we explore current and novel therapeutic options for overcoming therapeutic failure when dealing with A. baumannii-associated pneumonia. Among them, antibiotic combination therapy administering several drugs simultaneously or alternately, is one promising approach for optimizing therapeutic success. However, it has been associated with inconsistent and inconclusive therapeutic outcomes across different studies. Therefore, it is critical to undertake additional clinical trials to ascertain the clinical effectiveness of different antibiotic combinations. We also discuss the prospective roles of novel antimicrobial therapies including antimicrobial peptides, bacteriophage-based therapy, repurposed drugs, naturally-occurring compounds, nanoparticle-based therapy, anti-virulence strategies, immunotherapy, photodynamic and sonodynamic therapy, for utilizing them as additional alternative therapy while tackling A. baumannii-associated pneumonia. Importantly, these innovative therapies further require pharmacokinetic and pharmacodynamic evaluation for safety, stability, immunogenicity, toxicity, and tolerability before they can be clinically approved as an alternative rescue therapy for A. baumannii-associated pulmonary infections.
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