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A Preclinical Model of Exertional Heat Stroke in Mice08:22

A Preclinical Model of Exertional Heat Stroke in Mice

The protocol describes the development of a standardized, repeatable, preclinical model of exertional heat stroke (EHS) in mice free from adverse external stimuli such as electric shock. The model provides a platform for mechanistic, preventative, and therapeutic...
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Exertional Heat Stroke Mouse Model: A Protocol to Study Mechanisms Underlying Exertional Heat Stroke04:32

Exertional Heat Stroke Mouse Model: A Protocol to Study Mechanisms Underlying Exertional Heat Stroke

In this video we describe a step-by-step protocol to study exertional heat stroke (EHS) in a mouse...
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Escherichia coli -Based Complementation Assay to Study the Chaperone Function of Heat Shock Protein 7007:14

Escherichia coli -Based Complementation Assay to Study the Chaperone Function of Heat Shock Protein 70

This protocol demonstrates the chaperone activity of heat shock protein 70 (Hsp70). E. coli dnaK756 cells serve as a model for the assay as they harbor a native, functionally impaired Hsp70, making them susceptible to heat stress. The heterologous introduction of functional Hsp70 rescues the growth deficiency of the...
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Bacterial Transformation: The Heat Shock Method11:01

Bacterial Transformation: The Heat Shock Method

Transformation is the process that occurs when a cell ingests foreign DNA from its surroundings. Transformation can occur in nature in certain types of bacteria. In molecular biology, transformation is artificially reproduced in the lab via the creation of pores in bacterial cell membranes. Bacterial cells that are able to take up DNA from the environment are called competent cells. In the laboratory, bacterial cells can be made competent and DNA subsequently introduced by a procedure called...
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