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June 1, 1995Circulation133 citations

Mechanisms of Ischemic Preconditioning in Rat Myocardium

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KVKlaus VuorinenKYKari YlitaloKPKeijo Peuhkurinen

Structured PICO

Does ischemic preconditioning improve mechanical and metabolic recovery in Langendorff-perfused rat hearts?

P
Population
Langendorff-perfused rat hearts
I
Intervention
Ischemic preconditioning (3-minute global ischemia followed by 9 minutes of reperfusion)
C
Comparator
Control hearts perfused under normoxic conditions for the same time
O
Outcome
Mechanical and metabolic recovery evaluated by tissue metabolite determinations, mitochondrial ATPase activity measurements, and 31P nuclear magnetic resonance studies after 21 minutes of sustained ischemia and 15 minutes of reperfusionsurrogate

Ischemic preconditioning in rat hearts causes reversible inhibition of mitochondrial ATPase, which spares high-energy phosphates and improves postischemic recovery.

Abstract

BACKGROUND: Adenosine has been proposed as one mediator for the preconditioning effect in the myocardium of some animals, but recent investigations have shown that this may not be the mechanism in the rat heart, although the effect itself is clearly demonstrable. The cellular energy state has been shown to be better in preconditioned hearts, and the role of ATP consumption has been discussed. The role of inhibition of mitochondrial F1F0-ATPase as a mechanism for the preservation of ATP in preconditioned hearts remains controversial. METHODS AND RESULTS: Three-minute global ischemia followed by 9 minutes of reperfusion was used to precondition Langendorff-perfused rat hearts, and control hearts were perfused under normoxic conditions for the same time. The duration of sustained ischemia in both groups of hearts was 21 minutes, after which the hearts were reperfused for 15 minutes to evaluate their mechanical and metabolic recovery. Separate experiments were performed for tissue metabolite determinations, mitochondrial ATPase activity measurements, and 31P nuclear magnetic resonance studies. The recovery of the rate-pressure product was better in the preconditioned group. Three-minute preconditioning ischemia caused inhibition of the mitochondrial ATPase that persisted throughout the 9-minute intervening reperfusion so that at the early stages of sustained ischemia the enzyme activity was still more inhibited in preconditioned hearts. ATP was better preserved in preconditioned hearts than in control hearts during sustained ischemia. The accumulation of adenosine and its degradation products during sustained ischemia was greater in the control group. More lactate and H+ ions accumulated in this group, indicating higher anaerobic glycolysis. Also, inhibition of mitochondrial ATPase by oligomycin slowed ATP depletion during ischemia. CONCLUSIONS: The results indicate that preconditioning causes inhibition of rat heart mitochondrial ATPase that persists during reperfusion so that the enzyme is inhibited from the very beginning of the sustained ischemia. This inhibition leads to sparing of high-energy phosphates and improves the time-averaged energy state during ischemia. Although a causal relationship is difficult to prove, this reversible inhibition may contribute to postischemic recovery of the heart.

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Cite This Study

Vuorinen et al. (1995) studied this question.

synapsesocial.com/papers/6a7de566e37ea741e699a799https://doi.org/10.1161/01.cir.91.11.2810
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Also Consider

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

  1. 1Preconditioning preserves mitochondrial function and glycolytic flux during an early period of reperfusion in perfused rat hearts1997 · 65 citations
  2. 2Extracellular adenosine levels and cellular energy metabolism in ischemically preconditioned rat heart1998 · 70 citations
  3. 3Improved functional recovery by ischaemic preconditioning is not mediated by adenosine in the globally ischaemic isolated rat heart1993 · 143 citations
  4. 4Ischaemic preconditioning limits infarct size in the rat heart1992 · 141 citations
  5. 5Attenuation of postischaemic dysfunction by ischaemic preconditioning is not mediated by adenosine in the isolated rat heart1993 · 50 citations