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Updated: Jun 22, 2026

Non-invasive Assessment of Microvascular and Endothelial Function
Published on: January 29, 2013
Functional Assessment of Long-Term Microvascular Cardiac Allograft Vasculopathy
Noemi Bora1,2, Orsolya Balogh1, Tamás Ferenci3
1Gottsegen National Cardiovascular Center, 1096 Budapest, Hungary.
Insights
Cardiac allograft vasculopathy (CAV) is a major concern after heart transplantation (HTX). New functional assessments show microvascular dysfunction, not epicardial disease, may signal early CAV.
Area of Science:
- Cardiology
- Transplantation Medicine
- Vascular Biology
Background:
- Cardiac allograft vasculopathy (CAV) is a primary cause of mortality and retransplantation post-heart transplantation (HTX).
- Current yearly surveillance angiography has limited sensitivity for early CAV detection.
Purpose of the Study:
- To evaluate the functional status of coronary vasculature in HTX patients using advanced hemodynamic measurements.
- To determine if microcirculatory resistance and coronary flow reserve can detect early signs of CAV.
Main Methods:
- Bolus thermodilution-based coronary flow reserve (CFR), index of microcirculatory resistance (IMR), and fractional flow reserve (FFR) were measured.
- Measurements were taken in HTX patients during routine surveillance angiography without overt CAV.
Main Results:
- CFR significantly decreased annually (0.13/year), while IMR tended to increase (0.98/year).
- FFR remained stable and above 0.80, indicating no significant epicardial stenosis.
- Post-transplant, CFR declined and IMR increased, suggesting microvascular deterioration.
Conclusions:
- Epicardial coronary arteries in transplanted hearts did not show functional deterioration.
- Deterioration of microvasculature function, indicated by decreasing CFR and increasing IMR, is a key finding.
- CFR and IMR measurements show promise for early diagnosis of CAV.
Background:
Cardiac allograft vasculopathy (CAV) is a leading cause of death and retransplantation following heart transplantation (HTX). Surveillance angiography performed yearly is indicated for the early detection of the disease, but it remains of limited sensitivity.
Methods:
We performed bolus thermodilution-based coronary flow reserve (CFR) and index of microcirculatory resistance (IMR) and fractional flow reserve (FFR) measurements in HTX patients undergoing yearly surveillance coronary angiography without overt CAV.
Results:
In total, 27 HTX patients were included who had 52 CFR, IMR, and FFR measurements at a mean of 43 months after HTX. Only five measurements were performed in the first year. CFR decreased significantly by 0.13 every year (p = 0.04) and IMR tended to increase by 0.98 every year (p = 0.051), whereas FFR did not change (p = 0.161) and remained well above 0.80 over time. After one year, CFR decreased significantly (p = 0.022) and IMR increased significantly (p = 0.015), whereas FFR remained unchanged (p = 0.72).
Conclusions:
The functional status of the epicardial coronary arteries of transplanted hearts did not deteriorate over time. On the contrary, a significant decrease in CFR was noted. In view of the increasing IMR, this is caused by the deterioration of the function of microvasculature. CFR and IMR measurements may provide an early opportunity to diagnose CAV.
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