Renal vasodilatory influence of endogenous carbon monoxide in chronically hypoxic rats.
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17Beta-estradiol decreases hypoxic induction of erythropoietin gene expressionNovel role of endothelial BKCa channels in altered vasoreactivity following hypoxiaHeme oxygenase metabolites inhibit tubuloglomerular feedback in vivoAntioxidant and vasodilatory effects of heme oxygenase on mesenteric vasoreactivity following chronic hypoxia.Inhibition of heme oxygenase augments tubular sodium reabsorption.Role of caveolin-1 in endothelial BKCa channel regulation of vasoreactivity.Dependence of acetylcholine and ADP dilation of pial arterioles on heme oxygenase after transfusion of cell-free polymeric hemoglobin.Renal heme oxygenase-1 induction with hemin augments renal hemodynamics, renal autoregulation, and excretory functionRegulation of endothelial BK channels by heme oxygenase-derived carbon monoxide and caveolin-1.Heme oxygenase metabolites inhibit tubuloglomerular feedback (TGF)Heme oxygenase induction attenuates afferent arteriolar autoregulatory responsesIncreased nitric oxide production following chronic hypoxia contributes to attenuated systemic vasoconstriction.Correlation of HO-1 expression with onset and reversal of hypoxia-induced vasoconstrictor hyporeactivity.Homogeneous segmental profile of carbon monoxide-mediated pulmonary vasodilation in rats.Role of CO in attenuated vasoconstrictor reactivity of mesenteric resistance arteries after chronic hypoxia.48-h Hypoxic exposure results in endothelium-dependent systemic vascular smooth muscle cell hyperpolarization.Endogenous carbon monoxide is an endothelial-derived vasodilator factor in the mesenteric circulation.Heme oxygenase-mediated vasodilation involves vascular smooth muscle cell hyperpolarization.Interaction between endothelial heme oxygenase-2 and endothelin-1 in altered aortic reactivity after hypoxia in rats.Chronic intermittent hypoxia alters NE reactivity and mechanics of skeletal muscle resistance arteries.Endothelial-dependent dilation following chronic hypoxia involves TRPV4-mediated activation of endothelial BK channels.
P2860
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P2860
Renal vasodilatory influence of endogenous carbon monoxide in chronically hypoxic rats.
description
2000 nî lūn-bûn
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2000年の論文
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2000年学术文章
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2000年学术文章
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2000年学术文章
@zh-cn
2000年学术文章
@zh-hans
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2000年學術文章
@zh-hant
name
Renal vasodilatory influence of endogenous carbon monoxide in chronically hypoxic rats.
@en
Renal vasodilatory influence of endogenous carbon monoxide in chronically hypoxic rats.
@nl
type
label
Renal vasodilatory influence of endogenous carbon monoxide in chronically hypoxic rats.
@en
Renal vasodilatory influence of endogenous carbon monoxide in chronically hypoxic rats.
@nl
prefLabel
Renal vasodilatory influence of endogenous carbon monoxide in chronically hypoxic rats.
@en
Renal vasodilatory influence of endogenous carbon monoxide in chronically hypoxic rats.
@nl
P2860
P1476
Renal vasodilatory influence of endogenous carbon monoxide in chronically hypoxic rats.
@en
P2093
B R Walker
T L O'Donaughy
P2860
P304
P356
10.1152/AJPHEART.2000.279.6.H2908
P577
2000-12-01T00:00:00Z