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June 23, 1998Circulation818 citations

Mitochondrial ATP-Dependent Potassium Channels

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YLYongge LiuTSToshiaki SatoBOBrian O’Rourke

Key Result

Diazoxide selectively activated mitochondrial KATP channels and decreased the rate of cell death to about half of that in controls in a cellular model of simulated ischemia.

Structured PICO

P
Population
Intact rabbit ventricular myocytes used to study the mechanism of ischemic preconditioning.
I
Intervention
Diazoxide (KATP channel opener)
C
Comparator
Controls (simulated ischemia without diazoxide) and 5-hydroxydecanoic acid (KATP channel blocker)
O
Outcome
Mitochondrial redox state (flavoprotein fluorescence), sarcolemmal KATP currents, and rate of cell death in simulated ischemiasurrogate

Diazoxide selectively targets mitochondrial KATP channels, implying that these channels mediate the cardioprotective effects of KATP channel openers during ischemic preconditioning.

Abstract

BACKGROUND: Brief interruptions of coronary blood flow paradoxically protect the heart from subsequent prolonged ischemia. The basis of such endogenous cardioprotection, known as "ischemic preconditioning," remains uncertain. Pharmacological evidence has implicated ATP-dependent potassium (KATP) channels in the mechanism of preconditioning; however, the effects of sarcolemmal KATP channels on excitability cannot account for the protection. METHODS AND RESULTS: We simultaneously measured flavoprotein fluorescence, an index of mitochondrial redox state, and sarcolemmal KATP currents in intact rabbit ventricular myocytes. Our results show that diazoxide, a KATP channel opener, selectively activates mitochondrial KATP channels. Diazoxide induced reversible oxidation of flavoproteins with an EC50 of 27 micromol/L but did not activate sarcolemmal KATP channels. The subcellular site of diazoxide action is further localized to mitochondria by confocal imaging of fluorescence arising from flavoproteins and tetramethylrhodamine ethyl ester. In a cellular model of simulated ischemia, inclusion of diazoxide decreased the rate of cell death to about half of that in controls. Both the redox changes and protection are inhibited by the KATP channel blocker 5-hydroxydecanoic acid. CONCLUSIONS: Our results demonstrate that diazoxide targets mitochondrial but not sarcolemmal KATP channels and imply that mitochondrial KATP channels may mediate the protection from KATP channel openers.

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Cite This Study

Liu et al. (1998) studied Ischemic preconditioning. Diazoxide vs. Controls was evaluated on Rate of cell death in a cellular model of simulated ischemia. Diazoxide selectively activated mitochondrial KATP channels and decreased the rate of cell death to about half of that in controls in a cellular model of simulated ischemia.

synapsesocial.com/papers/6a6a25f3e0327edb0af1c3f7https://doi.org/10.1161/01.cir.97.24.2463
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Mechanisms by which opening the mitochondrial ATP- sensitive K+channel protects the ischemic heart2002 · 221 citations
  2. 2Cardioprotective Effect of Diazoxide Is Mediated by Activation of Sarcolemmal but Not Mitochondrial ATP-Sensitive Potassium Channels in Mice2003 · 128 citations
  3. 3Role of Protein Kinase C in Mitochondrial K<sub>ATP</sub>Channel–Mediated Protection Against Ca<sup>2+</sup>Overload Injury in Rat Myocardium1999 · 164 citations
  4. 4The KATP channel opener diazoxide protects cardiac myocytes during metabolic inhibition without causing mitochondrial depolarization or flavoprotein oxidation2001 · 74 citations
  5. 5Effective Pharmacotherapy Against Oxidative Injury: Alternative Utility of an ATP-Sensitive Potassium Channel Opener2007 · 23 citations