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The effect of delayed reperfusion following infarction in the rat on structural changes in viable myocardium

K McDonald1, C Chu, G Francis

  • 1Department of Medicine, University of Minnesota, Minneapolis 55455, USA. mcdon003@maroon.tc.umn.edu

Insights

Delayed reperfusion following myocardial infarction, even without saving heart muscle, reduces myocyte enlargement. This indicates that keeping the infarct artery open has anti-remodeling effects beyond the infarct zone.

Area of Science:

  • Cardiovascular Research
  • Myocardial Infarction
  • Cardiac Remodeling

Background:

  • Patency of the infarct-related artery after myocardial necrosis can limit ventricular remodeling.
  • Delayed reperfusion's anti-remodeling effect is partly due to inhibiting infarct expansion.
  • The impact of a patent artery on viable myocardium during remodeling is not well understood.

Purpose of the Study:

  • To investigate the effect of reperfusion on myocyte size and collagen content in viable myocardium following experimental myocardial infarction.
  • To determine if late reperfusion, without reducing infarct size, influences cardiac remodeling in non-infarcted areas.

Main Methods:

  • Experimental myocardial infarction was induced in rats.
  • Rats were divided into permanently ligated (NRP) and reperfused (RP) groups 150 minutes post-ligation.
  • Myocyte morphometrics and collagen content (hydroxyproline) were assessed 28 days post-infarction.

Main Results:

  • Late reperfusion did not reduce infarct size.
  • Reperfusion significantly attenuated myocyte length and volume increases in viable left ventricle, right ventricle, and septum.
  • Collagen content increased in viable left ventricular tissue in both reperfused and non-reperfused groups.

Conclusions:

  • Reperfusion without myocardial salvage mitigates myocyte hypertrophy and volume changes in remodeling myocardium.
  • Patency of the infarct artery exerts an anti-remodeling effect in areas remote from the infarct zone.
  • These findings suggest that maintaining infarct artery patency is beneficial for limiting adverse cardiac remodeling.
Abstract

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