ESKAPE pathogens rapidly develop resistance against antibiotics in development in vitro

抗生素 体外 微生物学 抗生素耐药性 生物 化学 遗传学
作者
Lejla Daruka,Márton Simon Czikkely,Petra Szili,Zoltán Farkas,D. Balogh,Gábor Grézal,Elvin Maharramov,Thu-Hien Vu,Levente Şipoş,Szilvia Juhász,Anett Dunai,Andreea Daraba,Mónika Számel,Tóbiás Sári,Tamás Stirling,Bálint Márk Vásárhelyi,Eszter Ari,Chryso Christodoulou,Máté Manczinger,Márton Zsolt Enyedi
出处
期刊:Nature microbiology [Nature Portfolio]
卷期号:10 (2): 313-331 被引量:30
标识
DOI:10.1038/s41564-024-01891-8
摘要

Despite ongoing antibiotic development, evolution of resistance may render candidate antibiotics ineffective. Here we studied in vitro emergence of resistance to 13 antibiotics introduced after 2017 or currently in development, compared with in-use antibiotics. Laboratory evolution showed that clinically relevant resistance arises within 60 days of antibiotic exposure in Escherichia coli, Klebsiella pneumoniae, Acinetobacter baumannii and Pseudomonas aeruginosa, priority Gram-negative ESKAPE pathogens. Resistance mutations are already present in natural populations of pathogens, indicating that resistance in nature can emerge through selection of pre-existing bacterial variants. Functional metagenomics showed that mobile resistance genes to antibiotic candidates are prevalent in clinical bacterial isolates, soil and human gut microbiomes. Overall, antibiotic candidates show similar susceptibility to resistance development as antibiotics currently in use, and the corresponding resistance mechanisms overlap. However, certain combinations of antibiotics and bacterial strains were less prone to developing resistance, revealing potential narrow-spectrum antibacterial therapies that could remain effective. Finally, we develop criteria to guide efforts in developing effective antibiotic candidates. An extensive experimental analysis of resistance to antibiotics in development or introduced post-2017 in ESKAPE bacteria reveals the dynamics of resistance acquisition, mutational targets and the presence of mutations in clinical and environmental isolates.
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