Beneficial effects of an intradialytic cycling training program in patients with end-stage kidney disease

Author:

Groussard Carole1,Rouchon-Isnard Myriam2,Coutard Céline2,Romain Fanny2,Malardé Ludivine1,Lemoine-Morel Sophie1,Martin Brice1,Pereira Bruno3,Boisseau Nathalie4

Affiliation:

1. Laboratory “Movement, Sport and Health Sciences” (M2S), Rennes 2 University–ENS Cachan, Avenue Robert Schuman, Campus de Ker Lann, F-35170 Bruz, France.

2. AURA Auvergne, 8 rue du Colombier, F-63400 Chamalières, France.

3. University Hospital Center (CHU) of Clermont-Ferrand, Biostatistics Unit, DRCI, F-63000 Clermont-Ferrand, France.

4. Laboratoire des Adaptations Métaboliques à l’Exercice en conditions Physiologiques et Pathologiques (AME2P), Université Blaise Pascal, Campus Universitaire des Cézeaux, Bât. Biologie B, 5 impasse Amélie Murat, TSA 60026, CS 60026, 63178 Aubière Cedex, France.

Abstract

In chronic kidney disease (CKD), oxidative stress (OS) plays a central role in the development of cardiovascular diseases. This pilot program aimed to determine whether an intradialytic aerobic cycling training protocol, by increasing physical fitness, could reduce OS and improve other CKD-related disorders such as altered body composition and lipid profile. Eighteen hemodialysis patients were randomly assigned to either an intradialytic training (cycling: 30 min, 55%–60% peak power, 3 days/week) group (EX; n = 8) or a control group (CON; n = 10) for 3 months. Body composition (from dual-energy X-ray absorptiometry), physical fitness (peak oxygen uptake and the 6-minute walk test (6MWT)), lipid profile (triglycerides (TG), total cholesterol, high-density lipoprotein, and low-density lipoprotein (LDL)), and pro/antioxidant status (15-F-isoprostanes (F2-IsoP) and oxidized LDL in plasma; superoxide dismutase, glutathione peroxidase, and reduced/oxidized glutathione in erythrocytes) were determined at baseline and 3 months later. The intradialytic training protocol did not modify body composition but had significant effects on physical fitness, lipid profile, and pro/antioxidant status. Indeed, at 3 months: (i) performance on the 6MWT was increased in EX (+23.4%, p < 0.001) but did not change in CON, (ii) plasma TG were reduced in EX (–23%, p < 0.03) but were not modified in CON, and (iii) plasma F2-IsoP concentrations were lower in EX than in CON (–35.7%, p = 0.02). In conclusion, our results show that 30 min of intradialytic training, 3 times per week for 3 months, are enough to exert beneficial effects on the most sensitive and reliable marker of lipid peroxidation (IsoP) while improving CKD-associated disorders (lipid profile and physical fitness). Intradialytic aerobic cycling training represents a useful and easy strategy to reduce CKD-associated disorders. These results need to be confirmed with a larger randomized study.

Publisher

Canadian Science Publishing

Subject

Physiology (medical),Nutrition and Dietetics,Physiology,General Medicine,Endocrinology, Diabetes and Metabolism

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