Enhanced expression of epithelial sodium channels causes salt-induced hypertension in mice through inhibition of the α2-isoform of Na+, K+-ATPase
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Transport across the choroid plexus epithelium.An isoform of Nedd4-2 is critically involved in the renal adaptation to high salt intake in miceUpdate on angiotensin II: new endocrine connections between the brain, adrenal glands and the cardiovascular system.Endogenous Ouabain: Recent Advances and ControversiesNontubular epithelial Na+ channel proteins in cardiovascular regulation.How does pressure overload cause cardiac hypertrophy and dysfunction? High-ouabain affinity cardiac Na+ pumps are crucial.The pump, the exchanger, and the holy spirit: origins and 40-year evolution of ideas about the ouabain-Na+ pump endocrine system.Pivotal role of α2 Na+ pumps and their high affinity ouabain binding site in cardiovascular health and disease.Epithelial Na+ Channel Regulation by Extracellular and Intracellular Factors.
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P2860
Enhanced expression of epithelial sodium channels causes salt-induced hypertension in mice through inhibition of the α2-isoform of Na+, K+-ATPase
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name
Enhanced expression of epithel ...... e α2-isoform of Na+, K+-ATPase
@ast
Enhanced expression of epithel ...... e α2-isoform of Na+, K+-ATPase
@en
type
label
Enhanced expression of epithel ...... e α2-isoform of Na+, K+-ATPase
@ast
Enhanced expression of epithel ...... e α2-isoform of Na+, K+-ATPase
@en
prefLabel
Enhanced expression of epithel ...... e α2-isoform of Na+, K+-ATPase
@ast
Enhanced expression of epithel ...... e α2-isoform of Na+, K+-ATPase
@en
P2093
P2860
P356
P1476
Enhanced expression of epithel ...... e α2-isoform of Na+, K+-ATPase
@en
P2093
Frans H H Leenen
Hong-Wei Wang
Monir Ahmad
Xiaohong Hou
P2860
P356
10.14814/PHY2.12383
P577
2015-05-01T00:00:00Z