Sodium Hydroxide Lysis

Sodium hydroxide lysis is a laboratory method that breaks open bacterial cells to release nucleic acids, making it important for extracting plasmid DNA in genetics research. In alkaline lysis, sodium hydroxide raises the pH and, typically with a detergent such as SDS, disrupts cell membranes while denaturing proteins and DNA; subsequent neutralization allows small, circular plasmids to re-form, whereas much of the chromosomal DNA and cellular debris precipitates. Researchers use this differential separation during plasmid preparation before restriction analysis, PCR, sequencing, or transformation. The method provides a rapid, scalable foundation for studying recombinant DNA and genetic constructs.

Sodium Hydroxide Lysis - Related Videos

Research

JoVE EoE - Bacterial Growth and Techniques

Isolation of Endospores from an Environmental Sample by Targeted Lysis of Vegetative Cells

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2025

Source: Wunderlin, T., et al. Physical Isolation of Endospores from Environmental Samples by Targeted Lysis of Vegetative Cells. J. Vis. Exp. (2016)This video demonstrates a method to isolate endospores from an environmental sample containing both vegetative cells and various bacteria. The procedure involves filtration, mechanical disruption, and selective chemical treatment to weaken and lyse vegetative cells while preserving endospores. The final step isolates the resilient endospores through...

A Procedure for Bacterial Harvesting and Mechanical Lysis

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2025

Source: Mercier, N., et al. MS2-Affinity Purification Coupled with RNA Sequencing in Gram-Positive Bacteria. J. Vis. Exp. (2021)This video demonstrates a step-by-step procedure for harvesting bacterial cells and mechanically lysing them to release intracellular contents.

Physical Isolation of Endospores from Environmental Samples by Targeted Lysis of Vegetative Cells

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Cited by 17 •

2016

A method to single out bacterial endospores from complex microbial communities was developed to perform tailored culture or molecular studies of this group of bacteria.

Facile Preparation of Ultrafine Aluminum Hydroxide Particles with or without Mesoporous MCM-41 in Ambient Environments

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Cited by 2 •

2017

An ultrafine aluminum hydroxide nanoparticle suspension was prepared via the controlled titration of [Al(H2O)]3+ with L-arginine to pH 4.6 with and without cage-effect confinement within mesoporous channels of MCM-41.

Education

JoVE Core - Cell Biology

Tissue Homogenization and Cell Lysis

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2023

Tissue homogenization involves disintegrating tissue architecture and lysing cells, and is an early step in isolating and analyzing cellular components. The method used for homogenization depends on the sample type, the amount of sample available, the analyte to be obtained, and the sensitivity of the method. These methods are broadly classified as mechanical and non-mechanical methods. Mechanical methods of tissue homogenization These methods rely on applying external physical force to disrupt...

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