Literature DB >> 25834234

Transient receptor potential channels in the vasculature.

Scott Earley1, Joseph E Brayden1.   

Abstract

The mammalian genome encodes 28 distinct members of the transient receptor potential (TRP) superfamily of cation channels, which exhibit varying degrees of selectivity for different ionic species. Multiple TRP channels are present in all cells and are involved in diverse aspects of cellular function, including sensory perception and signal transduction. Notably, TRP channels are involved in regulating vascular function and pathophysiology, the focus of this review. TRP channels in vascular smooth muscle cells participate in regulating contractility and proliferation, whereas endothelial TRP channel activity is an important contributor to endothelium-dependent vasodilation, vascular wall permeability, and angiogenesis. TRP channels are also present in perivascular sensory neurons and astrocytic endfeet proximal to cerebral arterioles, where they participate in the regulation of vascular tone. Almost all of these functions are mediated by changes in global intracellular Ca(2+) levels or subcellular Ca(2+) signaling events. In addition to directly mediating Ca(2+) entry, TRP channels influence intracellular Ca(2+) dynamics through membrane depolarization associated with the influx of cations or through receptor- or store-operated mechanisms. Dysregulation of TRP channels is associated with vascular-related pathologies, including hypertension, neointimal injury, ischemia-reperfusion injury, pulmonary edema, and neurogenic inflammation. In this review, we briefly consider general aspects of TRP channel biology and provide an in-depth discussion of the functions of TRP channels in vascular smooth muscle cells, endothelial cells, and perivascular cells under normal and pathophysiological conditions.
Copyright © 2015 the American Physiological Society.

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Year:  2015        PMID: 25834234      PMCID: PMC4551213          DOI: 10.1152/physrev.00026.2014

Source DB:  PubMed          Journal:  Physiol Rev        ISSN: 0031-9333            Impact factor:   37.312


  427 in total

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2.  LTRPC2 Ca2+-permeable channel activated by changes in redox status confers susceptibility to cell death.

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Journal:  Mol Cell       Date:  2002-01       Impact factor: 17.970

Review 3.  Flow-mediated endothelial mechanotransduction.

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Journal:  Physiol Rev       Date:  1995-07       Impact factor: 37.312

4.  Trpv1 reporter mice reveal highly restricted brain distribution and functional expression in arteriolar smooth muscle cells.

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Journal:  J Neurosci       Date:  2011-03-30       Impact factor: 6.167

Review 5.  The TRP ion channel family.

Authors:  D E Clapham; L W Runnels; C Strübing
Journal:  Nat Rev Neurosci       Date:  2001-06       Impact factor: 34.870

6.  Activation of recombinant trp by thapsigargin in Sf9 insect cells.

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7.  Identification of epoxyeicosatrienoic acids as endothelium-derived hyperpolarizing factors.

Authors:  W B Campbell; D Gebremedhin; P F Pratt; D R Harder
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8.  Capsaicin-induced nonneural vasoconstriction in canine mesenteric arteries.

Authors:  Robert Pórszász; Agnes Porkoláb; Andrea Ferencz; Tünde Pataki; Zoltán Szilvássy; János Szolcsányi
Journal:  Eur J Pharmacol       Date:  2002-04-26       Impact factor: 4.432

9.  Role of TRPM2 in H(2)O(2)-induced cell apoptosis in endothelial cells.

Authors:  Lei Sun; Ho-Yan Yau; Wei-Yan Wong; Ronald A Li; Yu Huang; Xiaoqiang Yao
Journal:  PLoS One       Date:  2012-08-20       Impact factor: 3.240

10.  Inhibition of native TRPC6 channel activity by phosphatidylinositol 4,5-bisphosphate in mesenteric artery myocytes.

Authors:  Anthony P Albert; Sohag N Saleh; William A Large
Journal:  J Physiol       Date:  2008-05-08       Impact factor: 5.182

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  147 in total

Review 1.  Ion channel networks in the control of cerebral blood flow.

Authors:  Thomas A Longden; David C Hill-Eubanks; Mark T Nelson
Journal:  J Cereb Blood Flow Metab       Date:  2015-11-09       Impact factor: 6.200

2.  Transdifferentiation of human endothelial progenitors into smooth muscle cells.

Authors:  HaYeun Ji; Leigh Atchison; Zaozao Chen; Syandan Chakraborty; Youngmee Jung; George A Truskey; Nicolas Christoforou; Kam W Leong
Journal:  Biomaterials       Date:  2016-02-03       Impact factor: 12.479

3.  Transient receptor potential channel 1 maintains adherens junction plasticity by suppressing sphingosine kinase 1 expression to induce endothelial hyperpermeability.

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Journal:  FASEB J       Date:  2015-08-27       Impact factor: 5.191

4.  Predominant contribution of L-type Cav1.2 channel stimulation to impaired intracellular calcium and cerebral artery vasoconstriction in diabetic hyperglycemia.

Authors:  Stefano Morotti; Madeline Nieves-Cintrón; Matthew A Nystoriak; Manuel F Navedo; Eleonora Grandi
Journal:  Channels (Austin)       Date:  2017-02-10       Impact factor: 2.581

5.  Dihydrocapsaicin-induced hypothermia after asphyxiai cardiac arrest in rats.

Authors:  Leanne Young
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Review 6.  Calcium Channels in Vascular Smooth Muscle.

Authors:  D Ghosh; A U Syed; M P Prada; M A Nystoriak; L F Santana; M Nieves-Cintrón; M F Navedo
Journal:  Adv Pharmacol       Date:  2016-10-14

Review 7.  Transient Receptor Potential Channels and Endothelial Cell Calcium Signaling.

Authors:  Pratish Thakore; Scott Earley
Journal:  Compr Physiol       Date:  2019-06-12       Impact factor: 9.090

8.  TRPM8 channel activation triggers relaxation of pudendal artery with increased sensitivity in the hypertensive rats.

Authors:  Darizy Flavia Silva; Camilla Ferreira Wenceslau; Cameron G Mccarthy; Theodora Szasz; Safia Ogbi; R Clinton Webb
Journal:  Pharmacol Res       Date:  2019-07-21       Impact factor: 7.658

Review 9.  Smooth Muscle Ion Channels and Regulation of Vascular Tone in Resistance Arteries and Arterioles.

Authors:  Nathan R Tykocki; Erika M Boerman; William F Jackson
Journal:  Compr Physiol       Date:  2017-03-16       Impact factor: 9.090

Review 10.  Crosslink between calcium and sodium signalling.

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Journal:  Exp Physiol       Date:  2018-01-16       Impact factor: 2.969

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