Enforced physical inactivity increases endothelial microparticle levels in healthy volunteers

Author:

Navasiolava Nastassia M.123,Dignat-George Françoise4,Sabatier Florence4,Larina Irina M.53,Demiot Claire6,Fortrat Jacques-Olivier13,Gauquelin-Koch Guillemette7,Kozlovskaya Inesa B.5,Custaud Marc-Antoine13

Affiliation:

1. Centre National de la Recherche Scientifique UMR 6214, Institut National de la Santé et de la Recherche Médicale (INSERM) U771, Faculté de Médecine d'Angers, Angers;

2. Institute of Physiology of Minsk, Minsk, Belarus; and

3. CaDyWEC International Laboratory, Faculté de Medicine d'Angers, Angers, France, and Institute of Biomedical Problems, Moscow, Russia

4. INSERM U 608, Physiopathologie de l'Endothélium, Faculté de Pharmacie, Marseille, France;

5. Institute of Biomedical Problems, Russian Academy of Sciences, Moscow, Russia;

6. EA3842, Homéostasie Cellulaire et Pathologies, Faculté de Pharmacie, Limoges;

7. Centre National d'Etudes Spatiales, Paris, France;

Abstract

A sedentary lifestyle has adverse effects on the cardiovascular system, including impaired endothelial functions. Subjecting healthy men to 7 days of dry immersion (DI) presented a unique opportunity to analyze the specific effects of enhanced inactivity on the endothelium. We investigated endothelial properties before, during, and after 7 days of DI involving eight subjects. Microcirculatory functions were assessed with laser Doppler in the skin of the calf. We studied basal blood flow and endothelium-dependent and -independent vasodilation. We also measured plasma levels of microparticles, a sign of cellular dysfunction, and soluble endothelial factors, reflecting the endothelial state. Basal flow and endothelium-dependent vasodilation were reduced by DI (22 ± 4 vs. 15 ± 2 arbitrary units and 29 ± 6% vs. 12 ± 6%, respectively, P < 0.05), and this was accompanied by an increase in circulating endothelial microparticles (EMPs), which was significant on day 3 (42 ± 8 vs. 65 ± 10 EMPs/μl, P < 0.05), whereas microparticles from other cell origins remained unchanged. Plasma soluble VEGF decreased significantly during DI, whereas VEGF receptor 1 and soluble CD62E were unchanged, indicating that the increase in EMPs was associated with a change in antiapoptotic tone rather than endothelial activation. Our study showed that extreme physical inactivity in humans induced by 7 days of DI causes microvascular impairment with a disturbance of endothelial functions, associated with a selective increase in EMPs. Microcirculatory endothelial dysfunction might contribute to cardiovascular deconditioning as well as to hypodynamia-associated pathologies. In conclusion, the endothelium should be the focus of special care in situations of acute limitation of physical activity.

Publisher

American Physiological Society

Subject

Physiology (medical),Cardiology and Cardiovascular Medicine,Physiology

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