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Updated: Mar 31, 2026

Non-invasive Assessment of Microvascular and Endothelial Function
Published on: January 29, 2013
Prognostic Significance of Peripheral Microvascular Endothelial Dysfunction in Heart Failure With Reduced Left
Koichiro Fujisue1, Seigo Sugiyama, Yasushi Matsuzawa
1Department of Cardiovascular Medicine, Graduate School of Medical Sciences, Kumamoto University.
Background:
Endothelial dysfunction plays a crucial role in heart failure (HF), but the association between peripheral microvascular endothelial function assessed by reactive hyperemia peripheral arterial tonometry (RH-PAT) and prognosis remains unknown in HF with reduced left ventricular (LV) ejection fraction (HFREF). We prospectively investigated the association between peripheral microvascular endothelial function and HF-related near-future cardiovascular outcomes in HFREF patients.
Methods And Results:
The 362 HFREF patients (LVEF <50%) were followed for HF-related events (composite of cardiovascular death and HF hospitalization) up to 3 years. A natural logarithmic-scaled RH-PAT index (Ln-RHI) was obtained for each patient. A total of 82 HF-related events were recorded. The lower-RHI group (Ln-RHI ≤0.49, median) experienced a higher rate of HF-related events compared with the higher-RHI group by Kaplan-Meier analysis (30.9% vs. 14.4%, log-rank test: P<0.001). Multivariable Cox hazard analysis identified Ln-RHI as an independent predictor for HF-related events (per 0.1, hazard ratio: 0.84, 95% confidence interval: 0.75-0.95, P=0.005). Adding Ln-RHI to the Meta-analysis Global Group in Chronic HF risk score (MAGGICs) and Seattle Heart Failure Model (SHFM), powerful prognostic predictors of HF, significantly improved the net reclassification index (MAGGICs: 20.11%, P=0.02, SHFM: 24.88%, P<0.001), and increased the C-statistics for prediction of HF-related events (MAGGICs+Ln-RHI: from 0.612 to 0.670, SHFM+Ln-RHI: from 0.662 to 0.695).
Conclusions:
Peripheral microvascular endothelial dysfunction assessed by RH-PAT was associated with future HF-related events in HFREF.
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