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Redox-dependent coronary metabolic dilation
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Dive into the research topics of 'Redox-dependent coronary metabolic dilation'. Together they form a unique fingerprint.
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Medicine & Life Sciences
Oxidation-Reduction
100%
Dilatation
86%
Sulfhydryl Compounds
75%
bromotrimethylammoniobimane
40%
Buffers
40%
monochlorobimane
32%
Dithiothreitol
21%
SB 203580
21%
Acetylcysteine
19%
Arterioles
19%
p38 Mitogen-Activated Protein Kinases
17%
Muscle Cells
15%
Enzyme Activation
10%
Nitroprusside
9%
Fluorescent Dyes
9%
Oxidants
9%
Superoxides
8%
Hydrogen Peroxide
8%
Oxygen Consumption
8%
Vasodilation
8%
Cardiac Myocytes
8%
Aorta
7%
Phosphotransferases
6%
Western Blotting
5%