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September 9, 2026Journal of the American College of Cardiology188 citationsOpen Access

Renal ischemia/reperfusion remotely improves myocardial energy metabolism during myocardial ischemia via adenosine receptors in rabbits: effects of “remote preconditioning”

ATAtsushi TakaokaINIchiro NakaeKMKenichi Mitsunami

Key Result

Renal preconditioning significantly reduced myocardial infarct size compared to control (19.6% vs 42.8% of the area at risk, p<0.05) via an adenosine-dependent mechanism.

Key Points

  • To assess changes in myocardial energy metabolism during sustained myocardial ischemia and reperfusion following remote renal preconditioning, and to evaluate the mechanistic role of adenosine receptors.
  • Open-chest rabbits under halothane anesthesia were assigned across six groups, including control (40-min coronary occlusion and 120-min reperfusion), myocardial preconditioning (MPC), and renal preconditioning (RPC).
  • Subsets received the adenosine receptor antagonist 8-sulfophenyl-theophylline (SPT, 10 mg/kg) prior to sustained ischemia (SPT alone, MPC + SPT, and RPC + SPT).
  • Phosphocreatine, ATP, and intracellular pH levels were dynamically measured by 31P-NMR spectroscopy, followed by myocardial infarct size measurement.
  • Both RPC and MPC preserved intracellular pH, delayed ATP depletion during sustained ischemia, and improved post-ischemic recovery of ATP and phosphocreatine compared to control.
  • Myocardial infarct size was significantly reduced in MPC (18.2±1.8%, n=9, p<0.05) and RPC (19.6±1.3%, n=9, p<0.05) compared to controls (42.8±3.5%, n=8).
  • Adenosine receptor blockade via SPT completely abolished the metabolic improvements and infarct-sparing effects in both MPC + SPT (35.6±2.7%, n=8) and RPC + SPT (34.8±3.6%, n=8) groups.

Structured PICO

Does remote renal preconditioning improve myocardial energy metabolism and reduce infarct size during subsequent myocardial ischemia in rabbits?

P
Population
48 anesthetized rabbits subjected to experimental myocardial ischemia and reperfusion.
I
Intervention
Renal preconditioning (10 min renal artery occlusion and 20 min reperfusion) or myocardial preconditioning (5 min coronary artery occlusion and 20 min reperfusion), with or without adenosine receptor inhibitor 8-sulfophenyl-theophylline (SPT, 10 mg/kg IV)
C
Comparator
Control group undergoing 40-min coronary occlusion followed by 120 min reperfusion without preconditioning
O
Outcome
Myocardial energy metabolism (phosphocreatine, ATP, intracellular pH) and myocardial infarct sizesurrogate

Remote renal preconditioning reduces myocardial infarct size and preserves energy metabolism during ischemia-reperfusion injury via an adenosine-dependent mechanism in a rabbit model.

Main Result

Absolute Event Rate: 19.6% vs 42.8%

p-value: p=< 0.05

Abstract

OBJECTIVES: This study examined the changes in myocardial energy metabolism during myocardial ischemia after "remote preconditioning" and investigated the involvement of adenosine receptors in the mechanisms of this effect. BACKGROUND: Recent studies have indicated that a brief period of ischemia and reperfusion (ischemic preconditioning, PC) in a remote organ reduces myocardial infarct size (IS) protecting against subsequent sustained myocardial ischemia. However, the mechanisms of "remote PC" remain unclear. We assessed myocardial energy metabolism during sustained myocardial ischemia and reperfusion after renal PC (RPC), in comparison with that after myocardial PC (MPC) in open-chest rabbits. It has been established that adenosine receptors are involved in the mechanisms of MPC. METHODS: Rabbits that had been anesthetized with halothane were divided into six groups. The control (CNT) group underwent 40-min coronary occlusion followed by 120 min reperfusion. Before the procedure, the MPC group underwent an additional protocol of 5 min coronary artery occlusion and 20 min reperfusion, and the RPC group received a 10 min episode of renal artery occlusion and 20 min reperfusion. In additional experimental groups, 8 sulfophenyl-theophylline (SPT, 10 mg/kg), an adenosine receptor inhibitor, was intravenously injected before the 40 min myocardial ischemia (SPT, MPC + SPT and RPC + SPT groups, respectively). Myocardial levels of phosphocreatine (PCr), ATP and intracellular pH (pHi) were measured by 31P-NMR spectroscopy. RESULTS: RPC and MPC delayed the decreases in ATP levels, preserved pHi during 40-min myocardial ischemia and resulted in better recovery of ATP and PCr during 120 min reperfusion compared with the controls. SPT abolished the improvement in myocardial energy metabolism and the reduction in myocardial IS caused by MPC or RPC. Myocardial IS in the CNT (n = 8), MPC (n = 9), RPC (n = 9), SPT (n = 6), MPC + SPT (n = 8) and RPC + SPT (n = 8) groups averaged 42.8+/-3.5%, 18.2+/-1.8%*, 19.6+/-1.3%*, 44.9+/-5.0%, 35.6+/-2.7% and 34.8+/-3.6% of the area at risk (*p < 0.05 vs. CNT), respectively. CONCLUSIONS: PC in a remote organ, similar to MPC, improved myocardial energy metabolism during ischemia and reperfusion and reduced IS in vivo by an adenosine-dependent mechanism in rabbits.

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Cite This Study

Takaoka et al. (1999) studied Myocardial ischemia (n=48). Renal preconditioning (RPC) vs. Control (40-min coronary occlusion followed by 120 min reperfusion) was evaluated on Myocardial infarct size as a percentage of the area at risk (p=< 0.05). Renal preconditioning significantly reduced myocardial infarct size compared to control (19.6% vs 42.8% of the area at risk, p<0.05) via an adenosine-dependent mechanism.

synapsesocial.com/papers/6aa0d0183590e3d2c095fe7ehttps://doi.org/10.1016/s0735-1097(98)00559-2
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Also Consider

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