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November 18, 2014Journal of the American College of Cardiology208 citationsOpen Access

Myocardial Edema After Ischemia/Reperfusion Is Not Stable and Follows a Bimodal Pattern

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RFRodrigo Fernández‐JiménezJSJavier Sánchez‐GonzalezJAJaume Agüero

Structured PICO

P
Population
25 instrumented Large-White pigs (30 kg to 40 kg)
I
Intervention
Closed-chest 40-min ischemia/reperfusion
C
Comparator
Baseline CMR controls (n=5)
O
Outcome
Myocardial water content (histological quantification) and T2 relaxation times (CMR)surrogate

Contrary to the accepted view of stable edema, myocardial edema after ischemia/reperfusion follows a bimodal pattern with peaks immediately after reperfusion and at 7 days.

Abstract

BACKGROUND: It is widely accepted that edema occurs early in the ischemic zone and persists in stable form for at least 1 week after myocardial ischemia/reperfusion. However, there are no longitudinal studies covering from very early (minutes) to late (1 week) reperfusion stages confirming this phenomenon. OBJECTIVES: This study sought to perform a comprehensive longitudinal imaging and histological characterization of the edematous reaction after experimental myocardial ischemia/reperfusion. METHODS: The study population consisted of 25 instrumented Large-White pigs (30 kg to 40 kg). Closed-chest 40-min ischemia/reperfusion was performed in 20 pigs, which were sacrificed at 120 min (n = 5), 24 h (n = 5), 4 days (n = 5), and 7 days (n = 5) after reperfusion and processed for histological quantification of myocardial water content. Cardiac magnetic resonance (CMR) scans with T2-weighted short-tau inversion recovery and T2-mapping sequences were performed at every follow-up stage until sacrifice. Five additional pigs sacrificed after baseline CMR served as controls. RESULTS: In all pigs, reperfusion was associated with a significant increase in T2 relaxation times in the ischemic region. On 24-h CMR, ischemic myocardium T2 times returned to normal values (similar to those seen pre-infarction). Thereafter, ischemic myocardium-T2 times in CMR performed on days 4 and 7 after reperfusion progressively and systematically increased. On day 7 CMR, T2 relaxation times were as high as those observed at reperfusion. Myocardial water content analysis in the ischemic region showed a parallel bimodal pattern: 2 high water content peaks at reperfusion and at day 7, and a significant decrease at 24 h. CONCLUSIONS: Contrary to the accepted view, myocardial edema during the first week after ischemia/reperfusion follows a bimodal pattern. The initial wave appears abruptly upon reperfusion and dissipates at 24 h. Conversely, the deferred wave of edema appears progressively days after ischemia/reperfusion and is maximal around day 7 after reperfusion.

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Fernández‐Jiménez et al. (2014) studied this question.

synapsesocial.com/papers/69f14b292811130d0cde2063https://doi.org/10.1016/j.jacc.2014.11.004
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Also Consider

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

  1. 1The effect of postinfarction intramyocardial hemorrhage on transverse relaxation time1992 · 40 citations
  2. 2Analysis of myocardial oedema by magnetic resonance imaging early after coronary artery occlusion with or without reperfusion1993 · 233 citations
  3. 3Assessment of postreperfusion myocardial hemorrhage using proton NMR imaging at 1.5 T.1992 · 101 citations
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  5. 5Magnetic Resonance Imaging Delineates the Ischemic Area at Risk and Myocardial Salvage in Patients With Acute Myocardial Infarction2010 · 129 citations