Circulating endothelial and progenitor cells: Evidence from acute and long-term exercise effects

Matina Koutroumpi, Stavros Dimopoulos, Katherini Psarra, Theodoros Kyprianou, Serafim Nanas, Matina Koutroumpi, Stavros Dimopoulos, Katherini Psarra, Theodoros Kyprianou, Serafim Nanas

Abstract

Circulating bone-marrow-derived cells, named endothelial progenitor cells (EPCs), are capable of maintaining, generating, and replacing terminally differentiated cells within their own specific tissue as a consequence of physiological cell turnover or tissue damage due to injury. Endothelium maintenance and restoration of normal endothelial cell function is guaranteed by a complex physiological procedure in which EPCs play a significant role. Decreased number of peripheral blood EPCs has been associated with endothelial dysfunction and high cardiovascular risk. In this review, we initially report current knowledge with regard to the role of EPCs in healthy subjects and the clinical value of EPCs in different disease populations such as arterial hypertension, obstructive sleep-apnea syndrome, obesity, diabetes mellitus, peripheral arterial disease, coronary artery disease, pulmonary hypertension, and heart failure. Recent studies have introduced the novel concept that physical activity, either performed as a single exercise session or performed as part of an exercise training program, results in a significant increase of circulating EPCs. In the second part of this review we provide preliminary evidence from recent studies investigating the effects of acute and long-term exercise in healthy subjects and athletes as well as in disease populations.

Keywords: Cardiovascular disease; Circulating endothelial cells; Circulating progenitor cells; Exercise.

Figures

Figure 1
Figure 1
An illustrative model of vasculogenesis after vascular endothelial damage mediated by bone marrow endothelial progenitor cell mobilization and recruitment. EPC: Endothelial progenitor cell.

Source: PubMed

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