Sodium-Hydrogen Antiporter
"Sodium-Hydrogen Antiporter" is a descriptor in the National Library of Medicine's controlled vocabulary thesaurus,
MeSH (Medical Subject Headings). Descriptors are arranged in a hierarchical structure,
which enables searching at various levels of specificity.
A plasma membrane exchange glycoprotein transporter that functions in intracellular pH regulation, cell volume regulation, and cellular response to many different hormones and mitogens.
Descriptor ID |
D017923
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MeSH Number(s) |
D12.776.157.530.450.162.775 D12.776.543.550.190.775 D12.776.543.585.450.162.775
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Concept/Terms |
Sodium-Hydrogen Antiporter- Sodium-Hydrogen Antiporter
- Antiporter, Sodium-Hydrogen
- Sodium Hydrogen Antiporter
- Na(+)-H(+)-Antiporter
- Sodium-Proton Antiporter
- Antiporter, Sodium-Proton
- Sodium Proton Antiporter
- Na(+)-H(+)-Exchanger
- Sodium-Hydrogen Exchanger
- Exchanger, Sodium-Hydrogen
- Sodium Hydrogen Exchanger
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Below are MeSH descriptors whose meaning is more general than "Sodium-Hydrogen Antiporter".
Below are MeSH descriptors whose meaning is more specific than "Sodium-Hydrogen Antiporter".
This graph shows the total number of publications written about "Sodium-Hydrogen Antiporter" by people in this website by year, and whether "Sodium-Hydrogen Antiporter" was a major or minor topic of these publications.
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Year | Major Topic | Minor Topic | Total |
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2012 | 1 | 0 | 1 |
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Below are the most recent publications written about "Sodium-Hydrogen Antiporter" by people in Profiles.
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Dudakovic A, Camilleri ET, Lewallen EA, McGee-Lawrence ME, Riester SM, Kakar S, Montecino M, Stein GS, Ryoo HM, Dietz AB, Westendorf JJ, van Wijnen AJ. Histone deacetylase inhibition destabilizes the multi-potent state of uncommitted adipose-derived mesenchymal stromal cells. J Cell Physiol. 2015 Jan; 230(1):52-62.
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Chávez JC, Hernández-González EO, Wertheimer E, Visconti PE, Darszon A, Treviño CL. Participation of the Cl-/HCO(3)- exchangers SLC26A3 and SLC26A6, the Cl- channel CFTR, and the regulatory factor SLC9A3R1 in mouse sperm capacitation. Biol Reprod. 2012 Jan; 86(1):1-14.
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Perdu B, Odgren PR, Van Wesenbeeck L, Jennes K, Mackay CC, Van Hul W. Refined genomic localization of the genetic lesion in the osteopetrosis (op) rat and exclusion of three positional and functional candidate genes, Clcn7, Atp6v0c, and Slc9a3r2. Calcif Tissue Int. 2009 May; 84(5):355-60.
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Gatto CL, Walker BJ, Lambert S. Asymmetric ERM activation at the Schwann cell process tip is required in axon-associated motility. J Cell Physiol. 2007 Jan; 210(1):122-32.
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Gatto CL, Walker BJ, Lambert S. Local ERM activation and dynamic growth cones at Schwann cell tips implicated in efficient formation of nodes of Ranvier. J Cell Biol. 2003 Aug 4; 162(3):489-98.
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Pilitsis JG, Diaz FG, O'Regan MH, Phillis JW. Inhibition of Na(+)/H(+) exchange by SM-20220 attenuates free fatty acid efflux in rat cerebral cortex during ischemia-reperfusion injury. Brain Res. 2001 Sep 21; 913(2):156-8.
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Ellstrom DR, Honeyman TW, Scheid CR. Role of blood pressure in regulating Na+/H+ exchange in vascular smooth muscle. Am J Hypertens. 1994 Apr; 7(4 Pt 1):340-5.
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Ellstrom DR, Foster CD, Honeyman TW, Scheid CR. Regulation of Na+/H+ exchange in mesenteric arteries from spontaneously hypertensive rats. Am J Hypertens. 1993 Jan; 6(1):21-7.
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Foster CD, Honeyman TW, Scheid CR. Alterations in Na(+)-H+ exchange in mesenteric arteries from spontaneously hypertensive rats. Am J Physiol. 1992 Jun; 262(6 Pt 2):H1657-62.
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Foster CD, Hill WA, Honeyman TW, Scheid CR. Characterization of Na(+)-H+ exchange in segments of rat mesenteric artery. Am J Physiol. 1992 Jun; 262(6 Pt 2):H1651-6.
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