In CAD patients, 12 weeks of aerobic exercise training did not alter cellular markers of endothelial integrity, though baseline EMPs inversely correlated with FMD improvement (rho = -0.374, P=0.001).
RCT (n=200)
1:1
Yes
Does aerobic interval training compared to continuous training improve cellular markers of endothelial integrity and endothelial function in patients with stable coronary artery disease?
In patients with stable CAD, improvements in endothelial function following exercise training are not mediated by changes in circulating endothelial progenitor cells or angiogenic T cells.
In this large multicenter trial, we aimed to assess the effect of aerobic exercise training in stable coronary artery disease (CAD) patients on cellular markers of endothelial integrity and to examine their relation with improvement of endothelial function. Two-hundred CAD patients (left ventricular ejection fraction > 40%, 90% male, mean age 58.4 ± 9.1 yr) were randomized on a 1:1 base to a supervised 12-wk rehabilitation program of either aerobic interval training or aerobic continuous training on a bicycle. At baseline and after 12 wk, numbers of circulating CD34(+)/KDR(+)/CD45dim endothelial progenitor cells (EPCs), CD31(+)/CD3(+)/CXCR4(+) angiogenic T cells, and CD31(+)/CD42b(-) endothelial microparticles (EMPs) were analyzed by flow cytometry. Endothelial function was assessed by flow-mediated dilation (FMD) of the brachial artery. After 12 wk of aerobic interval training or aerobic continuous training, numbers of circulating EPCs, angiogenic T cells, and EMPs were comparable with baseline levels. Whereas improvement in peak oxygen consumption was correlated to improvement in FMD (Pearson r = 0.17, P = 0.035), a direct correlation of baseline or posttraining EPCs, angiogenic T cells, and EMP levels with FMD was absent. Baseline EMPs related inversely to the magnitude of the increases in peak oxygen consumption (Spearman rho = -0.245, P = 0.027) and FMD (Spearman rho = -0.374, P = 0.001) following exercise training. In conclusion, endothelial function improvement in response to exercise training in patients with CAD did not relate to altered levels of EPCs and angiogenic T cells and/or a diminished shedding of EMPs into the circulation. EMP flow cytometry may be predictive of the increase in aerobic capacity and endothelial function.
Craenenbroeck et al. (Sat,) conducted a rct in Stable coronary artery disease (n=200). Aerobic interval training vs. Aerobic continuous training was evaluated on Cellular markers of endothelial integrity (EPCs, angiogenic T cells, and EMPs). In CAD patients, 12 weeks of aerobic exercise training did not alter cellular markers of endothelial integrity, though baseline EMPs inversely correlated with FMD improvement (rho = -0.374, P=0.001).
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