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Nicotinic acetylcholine receptors, or nAChRs, are receptor polypeptides that respond to the neurotransmitter acetylcholine. Nicotinic receptors also respond to drugs such as the agonist nicotine. They are found in the central and peripheral nervous system, muscle, and many other tissues of many organisms. At the neuromuscular junction they are ...
Its physiological effects stem from the stimulation of nicotinic acetylcholine receptors, which are located throughout the central and peripheral nervous systems. [56] The α4β2 nicotinic receptor subtype is the main nicotinic receptor subtype. [57] Nicotine activates brain receptors which produce sedative as well as pleasurable effects. [58]
Nicotinic receptors are the primary mediator of the effects of nicotine. In myasthenia gravis, the receptor at the neuromuscular junction is targeted by antibodies, leading to muscle weakness. Muscarinic acetylcholine receptors can be blocked by the drugs atropine and scopolamine.
The neuronal acetylcholine receptor subunit alpha-5, or alpha-5 nicotinic acetylcholine receptor (α5 nAChR) also known as the α5 receptor is a type of ligand gated neuronal type subunit of the nicotinic acetylcholine receptor involved in pain regulation encoded in the human by the CHRNA5 gene. This receptor is commonly associated with ...
A 2015 review noted that stimulation of the α4β2 nicotinic receptor is responsible for certain improvements in attentional performance; [62] among the nicotinic receptor subtypes, nicotine has the highest binding affinity at the α4β2 receptor (k i =1 nM), which is also the biological target that mediates nicotine's addictive properties. [63]
An α7 nicotinic agonist appears to have positive effects on neurocognition in persons with schizophrenia. [7] Activation of α7 nicotinic acetylcholine receptor on mast cells, is a mechanism by which nicotine enhances atherosclerosis. [8] Both α4β2 and α7 nicotinic receptors appear to be critical for memory, working memory, learning, and ...
The alpha-4 beta-2 nicotinic receptor, also known as the α4β2 receptor, is a type of nicotinic acetylcholine receptor implicated in learning, [1] consisting of α4 and β2 subunits. [2] It is located in the brain, where activation yields post- and presynaptic excitation, [2] mainly by increased Na + and K + permeability.
For instance, genetic markers for a specific type of nicotinic receptor (the α5-α3-β4 nicotine receptors) have been linked to increased risk for dependence. [ 16 ] [ 34 ] The most well-known hereditary influence related to nicotine dependence is a mutation at rs16969968 in the nicotinic acetylcholine receptor CHRNA5 , resulting in an amino ...