Literature DB >> 18509099

Postconditioning for salvage of ischemic skeletal muscle from reperfusion injury: efficacy and mechanism.

Sandra E McAllister1, Homa Ashrafpour, Neil Cahoon, Ning Huang, Michael A Moses, Peter C Neligan, Christopher R Forrest, Joan E Lipa, Cho Y Pang.   

Abstract

We tested our hypothesis that postischemic conditioning (PostC) is effective in salvage of ischemic skeletal muscle from reperfusion injury and the mechanism involves inhibition of opening of the mitochondrial permeability transition pore (mPTP). In bilateral 8x13 cm pig latissimus dorsi muscle flaps subjected to 4 h ischemia, muscle infarction increased from 22+/-4 to 41+/-1% between 2 and 24 h reperfusion and remained unchanged at 48 (38+/-6%) and 72 (40+/-1%) h reperfusion (P<0.05; n=4 pigs). PostC induced by four cycles of 30-s reperfusion/reocclusion at the onset of reperfusion after 4 h ischemia reduced muscle infarction from 44+/-2 to 22+/-2% at 48 h reperfusion. This infarct protective effect of PostC was mimicked by intravenous injection of the mPTP opening inhibitor cyclosporin A or NIM-811 (10 mg/kg) at 5 min before the end of 4 h ischemia and was abolished by intravenous injection of the mPTP opener atractyloside (10 mg/kg) at 5 min before PostC (P<0.05; n=4-5 pigs). PostC or intravenous cyclosporin A injection at 5 min before reperfusion caused a decrease in muscle myeloperoxidase activity and mitochondrial free Ca2+ concentration and an increase in muscle ATP content after 4 h ischemia and 2 h reperfusion compared with the time-matched controls. These effects of PostC were abolished by intravenous injection of atractyloside at 5 min before PostC (P<0.05; n=6 pigs). These observations support our hypothesis that PostC is effective in salvage of ischemic skeletal muscle from reperfusion injury and the mechanism involves inhibition of opening of the mPTP.

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Year:  2008        PMID: 18509099     DOI: 10.1152/ajpregu.90303.2008

Source DB:  PubMed          Journal:  Am J Physiol Regul Integr Comp Physiol        ISSN: 0363-6119            Impact factor:   3.619


  15 in total

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6.  Muscle fiber viability, a novel method for the fast detection of ischemic muscle injury in rats.

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8.  Remote effects of lower limb ischemia-reperfusion: impaired lung, unchanged liver, and stimulated kidney oxidative capacities.

Authors:  Z Mansour; A L Charles; M Kindo; J Pottecher; T N Chamaraux-Tran; A Lejay; J Zoll; J P Mazzucotelli; B Geny
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9.  Attenuation of skeletal muscle and renal injury to the lower limb following ischemia-reperfusion using mPTP inhibitor NIM-811.

Authors:  David Garbaisz; Zsolt Turoczi; Peter Aranyi; Andras Fulop; Oliver Rosero; Edit Hermesz; Agnes Ferencz; Gabor Lotz; Laszlo Harsanyi; Attila Szijarto
Journal:  PLoS One       Date:  2014-06-26       Impact factor: 3.240

10.  Putative role of ischemic postconditioning in a rat model of limb ischemia and reperfusion: involvement of hypoxia-inducible factor-1α expression.

Authors:  T Wang; Y T Zhou; X N Chen; A X Zhu
Journal:  Braz J Med Biol Res       Date:  2014-07-25       Impact factor: 2.590

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