抗生素
机制(生物学)
持久性(不连续性)
生物
多药耐受
细菌
细胞生物学
微生物学
计算生物学
免疫学
医学
生物信息学
抗生素治疗
作者
Adi Rotem,Yoav Kaplan,Orit Gefen,Irine Ronin,Alon Gutfreund,Hagai Rappeport,Raya Faigenbaum-Romm,Nitsan Naor,Elisheva Stav,Oded Agam,Nathalie Q. Balaban
出处
期刊:Science Advances
[American Association for the Advancement of Science]
日期:2026-01-02
卷期号:12 (1): eadt6577-eadt6577
被引量:1
标识
DOI:10.1126/sciadv.adt6577
摘要
Antibiotic persistence, typically attributed to dormant bacteria, is known to be a major cause of treatment failure. However, despite many years of intense research, no clear consensus on its mechanism has emerged. Here, we demonstrate that high survival under antibiotics may originate from two fundamentally different growth-arrest archetypes: either from a regulated growth arrest, leading to a protected dormant cellular state, or from a dysregulated disrupted growth arrest. Using modeling and experimental approaches including transcriptomics, microcalorimetry, and microfluidics, we unveil the characteristics and vulnerabilities of each growth-arrest archetype. In particular, disrupted bacteria show a general impairment of membrane homeostasis. This understanding resolves previous conflicting results regarding characteristics of persisters and allows tailoring treatments that target the different growth-arrested bacteria. The fundamental distinction between regulated and disrupted growth arrests should be broadly relevant for the description of cells under stress.
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