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July 16, 2009Anesthesiology99 citationsOpen Access

Anesthetic-induced Preconditioning Delays Opening of Mitochondrial Permeability Transition Pore via  Protein Kinase C-ϵ–mediated Pathway

DPDanijel PravdićFSFilip SedlićYMYasushi Mio

Structured PICO

Does isoflurane-induced preconditioning delay mitochondrial permeability transition pore opening in rat ventricular myocytes?

P
Population
Rat ventricular myocytes and mitochondria isolated from rats
I
Intervention
Isoflurane (anesthetic-induced preconditioning) in the presence or absence of nonselective PKC inhibitor chelerythrine or isoform-specific inhibitors of PKC-delta (rottlerin) and PKC-epsilon (myristoylated PKC-epsilon V1-2 peptide)
C
Comparator
Control cardiomyocytes and mitochondria not exposed to isoflurane or inhibitors
O
Outcome
Time necessary to induce mitochondrial permeability transition pore (mPTP) opening and Ca concentration required for mPTP openingsurrogate

Isoflurane-induced preconditioning delays mitochondrial permeability transition pore opening via a PKC-epsilon-mediated pathway, linking cytosolic and mitochondrial cardioprotective mechanisms.

Abstract

BACKGROUND: Cardioprotection by volatile anesthetic-induced preconditioning (APC) involves activation of protein kinase C (PKC). This study investigated the importance of APC-activated PKC in delaying mitochondrial permeability transition pore (mPTP) opening. METHODS: Rat ventricular myocytes were exposed to isoflurane in the presence or absence of nonselective PKC inhibitor chelerythrine or isoform-specific inhibitors of PKC-delta (rottlerin) and PKC-epsilon (myristoylated PKC-epsilon V1-2 peptide), and the mPTP opening time was measured by using confocal microscopy. Ca-induced mPTP opening was measured in mitochondria isolated from rats exposed to isoflurane in the presence and absence of chelerythrine or in mitochondria directly treated with isoflurane after isolation. Translocation of PKC-epsilon was assessed in APC and control cardiomyocytes by Western blotting. RESULTS: In cardiomyocytes, APC prolonged time necessary to induce mPTP opening (261 +/- 26 s APC vs. 216 +/- 27 s control; P < 0.05), and chelerythrine abolished this delay to 213 +/- 22 s. The effect of isoflurane was also abolished when PKC-epsilon inhibitor was applied (210 +/- 22 s) but not in the presence of PKC-delta inhibitor (269 +/- 31 s). Western blotting revealed translocation of PKC-epsilon toward mitochondria in APC cells. The Ca concentration required for mPTP opening was significantly higher in mitochondria from APC rats (45 +/- 8 microM x mg control vs. 64 +/- 8 microM x mg APC), and APC effect was reversed with chelerythrine. In contrast, isoflurane did not protect directly treated mitochondria. CONCLUSION: APC induces delay of mPTP opening through PKC-epsilon mediated inhibition of mPTP opening, but not through PKC-delta. These results point to the connection between cytosolic and mitochondrial components of cardioprotection by isoflurane.

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Cite This Study

Pravdić et al. (2009) studied this question.

synapsesocial.com/papers/6a83dbd714f94baa955bdf88https://doi.org/10.1097/aln.0b013e3181a91957
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