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Mitochondrial K
ATP
channel activation reduces anoxic injury by restoring mitochondrial membrane potential
M. Xu, Y. Wang, A. Ayub, M. Ashraf
Research output
:
Contribution to journal
›
Article
›
peer-review
91
Scopus citations
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ATP
channel activation reduces anoxic injury by restoring mitochondrial membrane potential'. Together they form a unique fingerprint.
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Medicine & Life Sciences
mitochondrial K(ATP) channel
100%
Mitochondrial Membrane Potential
69%
Cytochromes c
42%
Muscle Cells
36%
Wounds and Injuries
31%
Adenosine Triphosphate
30%
mitotracker orange
27%
HMR 1098
25%
Apoptosis
24%
Mitochondria
21%
Hypoxia
20%
5-hydroxydecanoic acid
20%
5,5',6,6'-tetrachloro-1,1',3,3'-tetraethylbenzimidazolocarbocyanine
18%
mitochondrial permeability transition pore
18%
Diazoxide
18%
Iodides
16%
KATP Channels
16%
Mites
16%
Cytoprotection
15%
Reperfusion Injury
12%
Cytosol
12%
Cyclosporine
12%
Reperfusion
11%
Permeability
11%
Myocardium
10%
Electrons
10%
Cell Survival
9%
Ischemia
9%
Staining and Labeling
8%
Membranes
7%
Therapeutics
2%