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June 1, 1994Circulation83 citationsOpen Access

Molecular evidence for induction of intracellular adhesion molecule-1 in the viable border zone associated with ischemia-reperfusion injury of the dog heart.

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KYKeith A. YoukerHHHal K. HawkinsGKGilbert L. Kukielka

Key Result

Ischemia-reperfusion in dog hearts induced ICAM-1 mRNA specifically in ischemic but viable myocardium, potentially rendering the border zone susceptible to neutrophil-induced injury.

Structured PICO

P
Population
Dog heart model of ischemia-reperfusion injury
I
Intervention
1 hour of ischemia followed by varying times of reperfusion (1, 2, 3, and 24 hours)
C
Comparator
Nonischemic areas and absence of reperfusion
O
Outcome
Detection, cellular origin, and localization of ICAM-1 mRNA in relation to cell injury and inflammatory infiltrationsurrogate

Induction of ICAM-1 mRNA in early reperfusion specifically localizes to the viable border zone, suggesting a mechanism for neutrophil-induced injury following myocardial ischemia.

Abstract

BACKGROUND: Acute inflammation may play a role in injury during reperfusion following myocardial ischemia. Studies in vitro suggest that intracellular adhesion molecule-1 (ICAM-1) mediates neutrophil adherence to cardiac myocytes and neutrophil-mediated injury. We have shown cytokine activity in postischemic cardiac lymph sufficient to maximally express ICAM-1 on myocytes and that ICAM-1 mRNA is found in the previously ischemic myocardium early in reperfusion. METHODS AND RESULTS: In the present study, we used in situ hybridization techniques to detect ICAM-1 mRNA and examine the cells of origin, relation to cell injury, and relation to inflammatory infiltration after 1 hour of ischemia and varying times of reperfusion. By 1 hour of reperfusion, ICAM-1 mRNA was detected in much of the ischemic myocardium, except in areas of contraction band necrosis. At 2 and 3 hours, a clear demarcation of necrotic areas surrounding ischemic areas of viable myocardium with ICAM-1 mRNA staining was present, and ICAM-1 mRNA staining increased with time. Nonischemic areas had no visible ICAM-1 mRNA staining in the first 3 hours. By 24 hours of reperfusion, ICAM-1 mRNA was present in both control and ischemic segments (excluding the necrotic areas) compatible with a generalized circulation of cytokines persistent at 24 hours. In the absence of reperfusion, ICAM-1 mRNA staining was not seen in the first 3 hours and was markedly reduced at 24 hours. The interface of viable and necrotic cells also contained the most extensive inflammatory infiltration. CONCLUSIONS: Evidence is presented that induction of ICAM-1 mRNA has highly specific localization to ischemic but viable myocardium. Induction of ICAM-1 mRNA transcription in early reperfusion may render the viable "border zone" susceptible to neutrophil-induced injury.

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Cite This Study

Youker et al. (1994) studied Myocardial ischemia-reperfusion injury. Ischemia-reperfusion vs. Nonischemic areas / absence of reperfusion was evaluated on ICAM-1 mRNA expression and localization. Ischemia-reperfusion in dog hearts induced ICAM-1 mRNA specifically in ischemic but viable myocardium, potentially rendering the border zone susceptible to neutrophil-induced injury.

synapsesocial.com/papers/6a079270b152628b468b3c0fhttps://doi.org/10.1161/01.cir.89.6.2736
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