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July 15, 1995Circulation58 citations

Metabolic Adaptation to a Gradual Reduction in Myocardial Blood Flow

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AAAndrew E. AraiSGSusan E. GrauerCAC G Anselone

Key Result

Gradual reduction in coronary blood flow by 35% in swine decreased regional left ventricular systolic wall thickening (from 45% to 18%, P<.001) with minimal metabolic evidence of ischemia.

Structured PICO

Does a gradual reduction in coronary blood flow cause contractile abnormalities without significant metabolic markers of ischemia in a swine model?

P
Population
10 acutely anesthetized and instrumented swine subjected to a gradual reduction in coronary blood flow over 60 minutes.
I
Intervention
Gradual reduction of mean left anterior descending coronary artery blood flow by approximately 1% per minute from 0 to 35 minutes, then held constant at 35% net reduction until 60 minutes
C
Comparator
Baseline/control values prior to blood flow reduction
O
Outcome
Regional left ventricular systolic wall thickening, phosphorylation potential (phosphocreatine-to-ATP ratio), and myocardial lactate productionsurrogate

Contractile abnormalities of mild ischemia can develop with minimal metabolic evidence of ischemia during a gradual decline in coronary blood flow, suggesting the heart downregulates energy requirements.

Main Result

Absolute Event Rate: 18% vs 45%

p-value: p=<.001

Abstract

BACKGROUND: Studies during 20% to 50% reductions in regional coronary blood flow have revealed a number of metabolic and functional adaptations that suggest the heart downregulates energy requirements and contractility in response to ischemia. In contrast to prior studies of sudden changes in coronary blood flow, we tested whether the heart could reduce ATP consumption commensurate with a gradual decrease in coronary blood flow or whether transient metabolic abnormalities are a necessary trigger in this process. METHODS AND RESULTS: From 0 to 35 minutes, mean left anterior descending coronary artery blood flow was reduced by approximately 1% per minute in 10 acutely anesthetized and instrumented swine. Coronary blood flow then was held constant between 35 and 60 minutes at the resulting 35% net blood flow reduction. Although systemic hemodynamics remained stable, a significant decrease in regional left ventricular systolic wall thickening developed (from control value of 45 +/- 11% to 18 +/- 11% at 60 minutes, P < .001) without a sustained decrease in the phosphorylation potential (as assessed by a < 2% decrease in either the transmural or subendocardial phosphocreatine-to-ATP ratio) and with minimal myocardial lactate production (4 +/- 44 mumol.min-1 x 100 g-1). CONCLUSIONS: Metabolic markers of ischemia such as ratio of phosphocreatine to ATP, ATP content, lactate content, and lactate production were blunted during this protocol of gradually worsening ischemia. Thus, contractile abnormalities of mild ischemia can develop with minimal metabolic evidence of ischemia. The downregulation of myocardial energy requirements can almost keep pace with the gradual decline in coronary blood flow.

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Cite This Study

Arai et al. (1995) studied Myocardial ischemia (n=10). Gradual reduction in coronary blood flow vs. Baseline (control value) was evaluated on Regional left ventricular systolic wall thickening (p=<.001). Gradual reduction in coronary blood flow by 35% in swine decreased regional left ventricular systolic wall thickening (from 45% to 18%, P<.001) with minimal metabolic evidence of ischemia.

synapsesocial.com/papers/6a22171c89ae9bae15e23017https://doi.org/10.1161/01.cir.92.2.244
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