Antibiotic Signaling

Antibiotic signaling describes how antibiotic molecules influence cellular behavior as chemical messages, sometimes at concentrations too low to inhibit microbial growth. In bacteria, subinhibitory antibiotic exposure can activate stress-response pathways, alter gene expression, and affect quorum sensing, motility, metabolite production, or interactions with neighboring cells. These signals may reshape microbial communities and influence virulence, competition, and the development or spread of antibiotic resistance. Studying antibiotic signaling connects molecular biology with microbiome research and infectious disease, helping researchers interpret antibiotic effects beyond cell killing and informing strategies for antimicrobial therapy and community-level control.

Antibiotic Signaling - Related Videos

Education

JoVE Science Education - Advanced Biology

Antibiotic Susceptibility Testing: Epsilometer Tests to Determine MIC Values of Two Antibiotics and Evaluate Antibiotic Synergy

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2023

Source: Anna Bläckberg1, Rolf Lood1 1 Department of Clinical Sciences Lund, Division of Infection Medicine, Biomedical Center, Lund University, 221 00 Lund Sweden Knowledge of the interactions between antibiotics and bacteria is important in understanding how microbes evolve antibiotic resistance. In 1928, Alexander Fleming discovered penicillin, an antibiotic that exerts its antibacterial function by interfering with cell wall regeneration (1). Other antibiotics with diverse mechanisms of...

Research

JoVE EoE - Bacterial Growth and Techniques

Swarming Behavior of Pseudomonas aeruginosa Under Antibiotic Stress

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2025

Source: Bru, J., et al., Time-lapse Imaging of Bacterial Swarms and the Collective Stress Response. J. Vis. Exp. (2020)This video demonstrates the procedure for analyzing the swarming behavior of Pseudomonas aeruginosa by observing bacterial growth from a central culture toward satellite spots containing the same culture mixed with an antibiotic, using an agar plate setup and time-lapse imaging.

Antibiotic Dereplication Using the Antibiotic Resistance Platform

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Cited by 2 •

2019

We describe a platform that utilizes a library of isogenic antibiotic resistant Escherichia coli for the dereplication of antibiotics. The identity of an antibiotic produced by bacteria or fungi can be deduced by the growth of E. coli expressing its respective resistance gene. This platform is economically effective and time-efficient.

Detection of Bacterial Antibiotic Susceptibility Using a Stimulated Raman Scattering Microscope

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2026

Source: Zhang, M. et. al., Rapid Antimicrobial Susceptibility Testing by Stimulated Raman Scattering Imaging of Deuterium Incorporation in a Single Bacterium. J. Vis. Exp. (2022)This video demonstrates the application of stimulated Raman scattering microscopy to assess susceptibility to antibiotics by tracking deuterium-labeled metabolic activity. By monitoring carbon–deuterium signals, the method enables rapid detection of resistant and susceptible bacterial populations.

Production of Antibiotics

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2026

Penicillin, one of the earliest and most widely used antibiotics, is produced industrially by the filamentous fungus Penicillium chrysogenum. Large stirred-tank bioreactors ranging from tens to hundreds of thousands of liters maintain tightly controlled temperature, pH, and dissolved oxygen conditions to support fungal metabolism and maximize antibiotic yield. Penicillin is a secondary metabolite, synthesized primarily during the stationary growth phase, which requires a carefully managed...

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