Nitric oxide inhibits highly selective sodium channels and the Na+/K+-ATPase in H441 cells.
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Epithelial Sodium Channels in Pulmonary Epithelial Progenitor and Stem CellsEpithelial Electrolyte Transport Physiology and the Gasotransmitter Hydrogen SulfideThe role of transforming growth factor β1 in the regulation of blood pressureNano-TiO₂ particles impair adhesion of airway epithelial cells to fibronectinActions of hydrogen sulfide on sodium transport processes across native distal lung epithelia (Xenopus laevis)Protective effects of dexamethasone on early acute lung injury induced by oleic acid in rats.Hydrogen sulfide decreases β-adrenergic agonist-stimulated lung liquid clearance by inhibiting ENaC-mediated transepithelial sodium absorption.The gasotransmitter hydrogen sulphide decreases Na⁺ transport across pulmonary epithelial cells.Epithelial Na⁺ channel activity in human airway epithelial cells: the role of serum and glucocorticoid-inducible kinase 1.An Optimised Human Cell Culture Model for Alveolar Epithelial Transport.AMP-activated protein kinase (AMPK)-dependent and -independent pathways regulate hypoxic inhibition of transepithelial Na+ transport across human airway epithelial cells.TGF-β directs trafficking of the epithelial sodium channel ENaC which has implications for ion and fluid transport in acute lung injury.Glucocorticoids recruit Tgfbr3 and Smad1 to shift transforming growth factor-β signaling from the Tgfbr1/Smad2/3 axis to the Acvrl1/Smad1 axis in lung fibroblasts.Ion transport by pulmonary epithelia.Gasotransmitters: novel regulators of epithelial na(+) transport?Regulation of cellular gas exchange, oxygen sensing, and metabolic control.An emerging role for gasotransmitters in the control of breathing and ionic regulation in fish.Controlling epithelial sodium channels with light using photoswitchable amilorides.The phosphorylation of endogenous Nedd4-2 In Na(+)-absorbing human airway epithelial cellsHydrogen sulfide contributes to hypoxic inhibition of airway transepithelial sodium absorption.Hydrogen sulfide as a regulator of respiratory epithelial sodium transport: the role of sodium-potassium ATPase. Focus on "Hydrogen sulfide contributes to hypoxic inhibition of airway transepithelial sodium absorption".Amiloride-sensitive sodium channels and pulmonary edema.Cytokine-Ion Channel Interactions in Pulmonary Inflammation.
P2860
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P2860
Nitric oxide inhibits highly selective sodium channels and the Na+/K+-ATPase in H441 cells.
description
2010 nî lūn-bûn
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2010年の論文
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2010年学术文章
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2010年学术文章
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2010年学术文章
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name
Nitric oxide inhibits highly s ...... e Na+/K+-ATPase in H441 cells.
@en
Nitric oxide inhibits highly s ...... e Na+/K+-ATPase in H441 cells.
@nl
type
label
Nitric oxide inhibits highly s ...... e Na+/K+-ATPase in H441 cells.
@en
Nitric oxide inhibits highly s ...... e Na+/K+-ATPase in H441 cells.
@nl
prefLabel
Nitric oxide inhibits highly s ...... e Na+/K+-ATPase in H441 cells.
@en
Nitric oxide inhibits highly s ...... e Na+/K+-ATPase in H441 cells.
@nl
P2093
P2860
P356
P1476
Nitric oxide inhibits highly s ...... e Na+/K+-ATPase in H441 cells.
@en
P2093
Alexandra Pichl
Martin Fronius
Mike Althaus
Wolfgang G Clauss
P2860
P356
10.1165/2009-0335OC
P577
2010-02-05T00:00:00Z