Contributions of A2A and A2B adenosine receptors in coronary flow responses in relation to the KATP channel using A2B and A2A/2B double-knockout mice.
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Cardiac purinergic signalling in health and diseaseMetabolic hyperemia requires ATP-sensitive K+ channels and H2O2 but not adenosine in isolated mouse hearts.Involvement of NADPH oxidase in A2A adenosine receptor-mediated increase in coronary flow in isolated mouse heartsAngiotensin II stimulation alters vasomotor response to adenosine in mouse mesenteric artery: role for A1 and A2B adenosine receptorsCharacterization of Dahl salt-sensitive rats with genetic disruption of the A2B adenosine receptor gene: implications for A2B adenosine receptor signaling during hypertensionHypoxia/reoxygenation impairs memory formation via adenosine-dependent activation of caspase 1Enhanced A2A adenosine receptor-mediated increase in coronary flow in type I diabetic mice.Functional and RNA expression profile of adenosine receptor subtypes in mouse mesenteric arteries.Role of Adenosine Receptor(s) in the Control of Vascular Tone in the Mouse Pudendal Artery.Interactions between A(2A) adenosine receptors, hydrogen peroxide, and KATP channels in coronary reactive hyperemiaCYP-epoxygenases contribute to A2A receptor-mediated aortic relaxation via sarcolemmal KATP channels.Spare Adenosine A2a Receptors Are Associated With Positive Exercise Stress Test In Coronary Artery Disease.A1 adenosine receptor negatively modulates coronary reactive hyperemia via counteracting A2A-mediated H2O2 production and KATP opening in isolated mouse heartsTargeting adenosine receptors in the development of cardiovascular therapeutics.In vivo assessment of coronary flow and cardiac function after bolus adenosine injection in adenosine receptor knockout mice.An allosteric modulator of the adenosine A1 receptor improves cardiac function following ischaemia in murine isolated hearts.Evidence for the involvement of NADPH oxidase in adenosine receptors-mediated control of coronary flow using A1 and A3 knockout mice.Functional changes in vascular reactivity to adenosine receptor activation in type I diabetic mice.Adenosine A2A receptor ligand recognition and signaling is blocked by A2B receptors.
P2860
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P2860
Contributions of A2A and A2B adenosine receptors in coronary flow responses in relation to the KATP channel using A2B and A2A/2B double-knockout mice.
description
2011 nî lūn-bûn
@nan
2011年の論文
@ja
2011年論文
@yue
2011年論文
@zh-hant
2011年論文
@zh-hk
2011年論文
@zh-mo
2011年論文
@zh-tw
2011年论文
@wuu
2011年论文
@zh
2011年论文
@zh-cn
name
Contributions of A2A and A2B a ...... d A2A/2B double-knockout mice.
@ast
Contributions of A2A and A2B a ...... d A2A/2B double-knockout mice.
@en
type
label
Contributions of A2A and A2B a ...... d A2A/2B double-knockout mice.
@ast
Contributions of A2A and A2B a ...... d A2A/2B double-knockout mice.
@en
prefLabel
Contributions of A2A and A2B a ...... d A2A/2B double-knockout mice.
@ast
Contributions of A2A and A2B a ...... d A2A/2B double-knockout mice.
@en
P2093
P2860
P1476
Contributions of A2A and A2B a ...... d A2A/2B double-knockout mice.
@en
P2093
Bunyen Teng
Catherine Ledent
Maryam Sharifi Sanjani
S Jamal Mustafa
Stephen Tilley
Thomas Krahn
P2860
P304
P356
10.1152/AJPHEART.00052.2011
P577
2011-09-23T00:00:00Z