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Ion Channel Blockade

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Ion channel blockade refers to the inhibition of ion channels, which are integral membrane proteins that facilitate the passage of ions across cell membranes. This process can alter cellular excitability and signaling, impacting various physiological functions and is often studied in pharmacology and neurobiology.
lightbulbAbout this topic
Ion channel blockade refers to the inhibition of ion channels, which are integral membrane proteins that facilitate the passage of ions across cell membranes. This process can alter cellular excitability and signaling, impacting various physiological functions and is often studied in pharmacology and neurobiology.
Fourier analysis of the hydrophobicities of the acetylcholine receptor subunit sequences reveals regions of amphipathic secondary structure. Prediction of a consensus secondary structure based on this analysis and on an empirical... more
Ion channels are membrane-spanning integral proteins expressed in multiple organs, including the eye. In the eye, ion channels are involved in various physiological processes, like signal transmission and visual processing. A wide range... more
A significant drop of tissue pH or acidosis is a common feature of acute neurological conditions such as ischemic stroke, brain trauma, and epileptic seizures. Acid-sensing ion channels, or ASICs, are proton-gated cation channels widely... more
As an experimental model system, the fruit fly Drosophila melanogaster has been seminal in shaping our understanding of the circadian clockwork. The wealth of genetic tools at our disposal over the past four decades has enabled discovery... more
Human brain development is a continuum governed by differential gene expression. Therefore, we proceeded to identify genes selectively expressed in the developing brain. Using differential display and library screening, a novel rat cDNA,... more
There are two reasons for suspecting that phosphate complexes of arginine make it very difficult to derive gating charge in voltage gated potassium (and presumably sodium) channels from the motion of charged arginines. For one thing, the... more
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