Chloride Channels

Chloride channels are membrane proteins that regulate the movement of chloride ions across cell membranes, helping control electrical signaling, cell volume, and fluid balance. When activated by voltage, intracellular signals, or ligand binding, these channels form selective pores through which chloride ions flow down their electrochemical gradient, altering membrane potential and cellular excitability. In biology, chloride channels support nerve and muscle function, epithelial secretion, and regulation of intracellular osmotic conditions. Their activity is especially important in tissues such as the nervous system, kidneys, and airways, while defects or altered regulation can contribute to neurological, renal, and respiratory disorders.

Chloride Channels - Related Videos

Research

JoVE Journal - Chemistry

Dynamic Electrochemical Measurement of Chloride Ions

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Cited by 5 •

2016

Dynamic measurement of chloride ions is presented. Transition time of an Ag/AgCl electrode, during a chronopotentiometric technique, can give the concentration of chloride ions in electrolyte. This method does not require a stable conventional reference electrode.

Education

JoVE Core - Biology

Ion Channels

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2019

The movement of ions like sodium, potassium, and calcium into and out of the cell is essential to maintain the electrochemical gradient in living cells. The ion channels—a class of membrane transport proteins—help maintain this ionic gradient for the smooth functioning of physiological activities such as maintaining cell size and volume, conducting nerve impulses, and gas and nutrient exchange. Ion channels are specialized integral membrane proteins on the plasma membrane that allow specific...

Ferric Chloride-induced Murine Thrombosis Models

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Cited by 56 •

2016

We report a refined procedure of the ferric chloride (FeCl3)-induced thrombosis models on carotid and mesenteric artery as well as vein, characterized efficiently using intravital microscopy to monitor time to occlusive thrombi formation.

Transformation of E. coli Cells Using an Adapted Calcium Chloride Procedure

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2023

Source: Natalia Martin1, Andrew J. Van Alst1, Rhiannon M. LeVeque1, and Victor J. DiRita1 1 Department of Microbiology and Molecular Genetics, Michigan State University Bacteria have the ability to exchange genetic material (DeoxyriboNucleic Acid, DNA) in a process known as horizontal gene transfer. Incorporating exogenous DNA provides a mechanism by which bacteria can acquire new genetic traits that allow them to adapt to changing environmental conditions, such as the presence of antibiotics...

Cesium Chloride-Based Purification of Genome-Containing Adenoviral Vectors

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2026

Source: Ehrke-Schulz, E., et al. Cloning and Large-Scale Production of High-Capacity Adenoviral Vectors Based on the Human Adenovirus Type 5. J. Vis. Exp. (2016)This video demonstrates the purification of high-capacity adenoviral vectors using cesium chloride gradient ultracentrifugation, enabling the separation of genome-containing virions for applications in gene delivery, vector characterization, and preclinical therapeutic...

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