Bacterial Spore Inactivation

Bacterial spore inactivation is the controlled destruction or loss of viability of dormant, highly resistant bacterial spores, a process essential for preventing contamination and ensuring biosafety. It works by applying physical or chemical stresses that damage spore coats, membranes, proteins, or genetic material; effectiveness depends on treatment intensity, exposure time, temperature, moisture, and spore species. In bioengineering, spore inactivation supports sterilization validation, aseptic manufacturing, biomaterials processing, and the safe development of microbial systems, while helping researchers compare treatment performance and understand how spores survive extreme conditions.

Bacterial Spore Inactivation - Related Videos

Research

JoVE EoE - Bacterial Growth and Techniques

Visualization of Germination Proteins in the Inner Membrane of Bacterial Spores

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2025

Source: Wen, J., Pasman, et. al., Visualization of Germinosomes and the Inner Membrane in Bacillus subtilis Spores. J. Vis. Exp. (2019)This video demonstrates the use of structured illumination microscopy to acquire three-dimensional fluorescence images that reveal the organization of germination proteins within the bacterial spore.

Detecting Cortex Fragments During Bacterial Spore Germination

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Cited by 8 •

2016

Herein, we describe a colorimetric assay to detect the presence of reducing sugars during bacterial spore germination.

Colorimetric Detection of Cortex Degradation During Bacterial Spore Germination

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2025

Source: Francis, M. B., et al. Detecting Cortex Fragments During Bacterial Spore Germination. J. Vis. Exp. (2016).This video demonstrates a colorimetric method to detect cortex degradation during bacterial spore germination by measuring the release of reducing sugars over time. Using N-acetylglucosamine standards and time-point samples, the assay quantifies sugar concentration through a purple chromogenic reaction, indicating the extent of cortex hydrolysis.

Quantification of Light-Induced Bacterial Inactivation Through Reactive Oxygen Species Generation

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2025

Source: Cheng, C., et al. Inactivation of Pathogens via Visible-Light Photolysis of Riboflavin-5′-Phosphate. J. Vis. Exp. (2022).In this video, a buffered reaction mixture containing L-methionine, nitro blue tetrazolium (NBT), and flavin mononucleotide (FMN) is irradiated with violet light to induce reactive oxygen species (ROS) production. This leads to bacterial inactivation and the formation of spectrometrically detectable formazan.

Education

JoVE Core - Biology

X-Inactivation

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2019

The human X chromosome contains over ten times the number of genes as in the Y chromosome. Since males have only one X chromosome, and females have two, one might expect females to produce twice as many of the proteins, with undesirable results. Instead, in order to avoid this potential issue, female mammalian cells inactivate nearly all the genes in one of their X chromosomes during early embryonic development. In the nuclear envelope surrounding the cell nucleus, the inactivated X chromosome...

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