Bacterial Inhibition

Bacterial inhibition is the reduction or prevention of bacterial growth, reproduction, or survival by physical conditions, chemical agents, or biological interactions. It occurs when factors such as antibiotics, disinfectants, nutrient limitation, acidity, temperature, or competing microorganisms disrupt essential processes, including cell-wall synthesis, protein production, DNA replication, or membrane function. In biology, inhibition assays measure these effects through outcomes such as zones of clearance, reduced colony formation, or changes in growth rate. These methods support antimicrobial screening, infection research, food preservation, and studies of microbial competition, while helping researchers assess susceptibility and investigate mechanisms of resistance.

Bacterial Inhibition - Related Videos

Research

JoVE EoE - Viral Growth and Techniques

Assessing Phage-Mediated Bacterial Growth Inhibition Using Optical Density Measurements

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2026

Source: Niu, Y. D., et al. Bacteriophage Effectiveness for Biocontrol of Foodborne Pathogens Evaluated via High-Throughput Settings. J. Vis. Exp. (2021)This video demonstrates a microplate-based assay to evaluate the lytic activity of phage cocktails against E.coli bacterial cultures. It highlights how changes in optical density reveal phage potency and the concentration needed for complete bacterial...

Immunoblot Analysis of Apoptosis Inhibition in Host Cells Expressing an Antiapoptotic Bacterial Protein

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2026

Source: Berens, C. et al. Applying an Inducible Expression System to Study Interference of Bacterial Virulence Factors with Intracellular Signaling. J. Vis. Exp. (2015)This video demonstrates the use of immunoblotting to assess apoptosis inhibition by the bacterial effector protein CaeB in human cells. It outlines the steps for detecting apoptotic markers following doxycycline-induced expression of pro-apoptotic proteins in host cells expressing the effector.

Identification of Growth Inhibition Phenotypes Induced by Expression of Bacterial Type III Effectors in Yeast

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Cited by 33 •

2010

In this video, we describe a procedure for the expression of bacterial type III effectors in yeast and the identification of effector-induced growth inhibition phenotypes. Such phenotypes can be subsequently exploited to elucidate effector functions and targets.

Methods to Inhibit Bacterial Pyomelanin Production and Determine the Corresponding Increase in Sensitivity to Oxidative Stress

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Cited by 11 •

2015

Bacterial pyomelanin production results in increased resistance to oxidative stress and virulence. We report on techniques that can be used to determine inhibition of pyomelanin production and assay the resulting increase in sensitivity to oxidative stress in bacteria, as well as determine antibiotic minimum inhibitory concentration (MIC).

Education

JoVE Core - Biology

Feedback Inhibition

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2019

Biochemical reactions are occurring constantly in cells, converting starting substances to different products, usually with the help of enzymes that speed the reactions. Without enzymes, it would take far too long for most reactions to occur to be useful to the cell! Since enzymes help control the rate of reactions, their activity is regulated so that appropriate amounts of starting materials, intermediate metabolites, and products are maintained in the cell. Excessive build-up or depletion of...

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