Results 151 to 160 of about 802,879 (181)
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TRPC Channels in Pheromone Sensing

2010
Pheromone recognition relies on an amplification cascade that is triggered by pheromone binding to G protein-coupled receptors (GPCR). The first step in translation of GPCR activation by pheromones in the vomeronasal organ and main olfactory epithelium (MOE) into a cellular response is the activation of a transient receptor potential (TRP) family ...
Kirill, Kiselyov   +2 more
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TRPC Channels and Alzheimer’s Disease

2017
Alzheimer's disease (AD) is the most common neurodegenerative disease in the world. The "amyloid hypothesis" is one of the predominant hypotheses for the pathogenesis of AD. Besides, tau protein accumulation, calcium homeostasis disruption, and glial cell activation are also remarkable features in AD.
Rui, Lu, Qian, He, Junfeng, Wang
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TRPC Channels and Brain Inflammation

2017
Nonresolving low-grade inflammation is supposed to underly the basis of chronic disorders including cardiovascular diseases, cancer, diabetes, obesity, and psychiatric disorders such as depression and Alzheimer's diseases. There is increasing evidence suggesting that pathophysiology of psychiatric disorders is related to the inflammatory responses ...
Yoshito, Mizoguchi, Akira, Monji
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TRPC Channels and Stroke

2017
TRPC channels play important roles in neuronal death/survival in ischemic stroke, vasospasm in hemorrhagic stroke, thrombin-induced astrocyte pathological changes, and also in the initiation of stroke by affecting blood pressure and atherogenesis. TRPCs' unique channel characters and downstream pathways make them possible new targets for stroke therapy.
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TRPC Channels and Epilepsy

2017
Accumulating evidence suggest that TRPC channels play critical roles in various aspects of epileptogenesis. TRPC1/4 channels are major contributors to nonsynaptically derived epileptiform burst firing in the CA1 and the lateral septum. TRPC7 channels play a critical role in synaptically derived epileptiform burst firing.
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TRPC Channels and Mental Disorders

2017
Transient receptor potential canonical (TRPC) channels mediate the influx of different types of cations through the cell membrane and are involved in many functions of the organism. Evidences of involvement of TRPC channels in neuronal development suggest that this family of proteins might play a role in certain neurological disorders.
Karina, Griesi-Oliveira   +2 more
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Physiological Functions and Regulation of TRPC Channels

2014
The TRP-canonical (TRPC) subfamily, which consists of seven members (TRPC1-TRPC7), are Ca(2+)-permeable cation channels that are activated in response to receptor-mediated PIP2 hydrolysis via store-dependent and store-independent mechanisms. These channels are involved in a variety of physiological functions in different cell types and tissues.
Hwei Ling, Ong   +3 more
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The enigmatic TRPCs: multifunctional cation channels

Trends in Cell Biology, 2004
Abstract Canonical transient receptor potential (TRPC) channels are vertebrate homologs of the Drosophila photoreceptor channel. Considerable research has been carried out on the seven members of this family, particularly regarding their possible role in Ca 2+ entry.
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TRPC Channels and Programmed Cell Death

2017
Neurotrophins, including nerve growth factor (NGF) and brain-derived neurotrophic factor (BDNF), bind to their high-affinity receptors to promote neuronal survival during brain development. One of the key downstream pathways is the phospholipase C (PLC) pathway, which not only plays a central role in calcium release from internal store but also in ...
Jian, Zhou, Yichang, Jia
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Functional roles of TRPC channels in the developing brain

Pflügers Archiv - European Journal of Physiology, 2008
Transient receptor potential canonical (TRPC) channels are Ca(2+)-permeable, nonselective cation channels formed by homomeric or heteromeric complexes of TRPC proteins that contain six transmembrane domains. These channels can be activated through a phospholipase-C-dependent mechanism, making them sensors for environmental cues. Their expression begins
Yilin, Tai   +3 more
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