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Updated: Aug 11, 2025

Evaluation of Coronary Flow Reserve After Myocardial Ischemia Reperfusion in Rats
Published on: June 28, 2019
Coronary microcirculation in nonculprit vessel territory in reperfused acute myocardial infarction
Murat Sezer1, Ahmet Tas2, Zeynep G Demirtakan2
1Istanbul Faculty of Medicine, Istanbul University, Istanbul, Turkey; Acibadem International Hospital, Istanbul, Turkey.
Insights
Reperfusion after heart attack can damage distant heart areas. This study shows microvascular injury extends to non-infarcted regions, influenced by infarct size and damage in the affected artery.
Area of Science:
- Cardiology
- Cardiovascular Research
- Interventional Cardiology
Background:
- Debate exists on reperfusion-induced microvascular damage (MVD) extending to remote myocardial regions in ST-elevation myocardial infarction (STEMI) patients undergoing primary percutaneous intervention (pPCI).
- Understanding this phenomenon is crucial for assessing the full impact of reperfusion therapy.
Purpose of the Study:
- To investigate the impact of reperfusion on remote microcirculatory territories.
- To analyze hemodynamic alterations in non-culprit coronary arteries in relation to reperfusion events.
Main Methods:
- Studied 20 STEMI patients undergoing pPCI.
- Measured peri-reperfusion hemodynamic changes in non-culprit vessels before and 1-hour after culprit vessel reopening.
- Compared intracoronary pressure and flow velocity data using pairwise analyses.
Main Results:
- Microvascular resistance and zero flow pressure significantly increased in non-culprit vessels post-reperfusion.
- Resting and hyperemic peak flow velocities significantly decreased post-reperfusion.
- Increased microvascular resistance and zero flow pressure were more pronounced in patients with larger infarcts and greater MVD in the culprit vessel territory.
Conclusions:
- Microvascular injury related to reperfusion extends to remote myocardial areas.
- The extent of this remote MVD is associated with the magnitude of the adjacent infarction and MVD within the infarct zone.
Background:
There is an ongoing debate on the extension of reperfusion-related microvascular damage (MVD) throughout the remote noninfarcted myocardial regions in patients with ST-elevation myocardial infarction (STEMI) that undergo primary percutaneous intervention (pPCI). The aim of this study was to elucidate the impact of reperfusion on remote microcirculatory territory by analyzing hemodynamic alterations in the nonculprit-vessel in relation to reperfusion.
Methods:
A total of 20 patients with STEMI undergoing pPCI were included. Peri-reperfusion temporal changes in hemodynamic parameters were obtained in angiographically normal nonculprit vessels before and 1-h after reopening of the culprit vessel. Intracoronary pressure and flow velocity data were compared using pairwise analyses (before and 1-h after reperfusion).
Results:
In the non-culprit vessel, compared to the pre-reperfusion state, mean resting average peak velocity (33.4 ± 9.4 to 25.0 ± 4.9 cm/s, P < 0.001) and mean hyperemic average peak velocity (53.5 ± 14.4 to 42.1 ± 10.66 cm/s, P = 0.001) significantly decreased; whereas baseline (3.2 ± 1.0 to 4.0 ± 1.0 mmHg.cm-1.s, P < 0.001) and hyperemic microvascular resistance (HMR) (1.9 ± 0.6 to 2.4 ± 0.7 mmHg.cm-1.s, P < 0.001) and mean zero flow pressure (Pzf) values (32.5 ± 6.9 to 37.6 ± 8.3 mmHg, P = 0.003) significantly increased 1-h after reperfusion. In particular, the magnitude of changes in HMR and Pzf values following reperfusion were more prominent in patients with larger infarct size and with higher extent of MVD in the culprit vessel territory.
Conclusion:
Reperfusion-related microvascular injury extends to involve remote myocardial territory in relation to the magnitude of the adjacent infarction and infarct-zone MVD. (GUARD Clinical TrialsNCT02732080).
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