Journal Article
A clinical evaluation of VO2 kinetics in kidney transplant recipients
Alessandro Patti; Daniel Neunhaeuserer; Sara Ortolan; Fausto Roman; Andrea Gasperetti; Francesca Battista; Caterina Di Bella; Stefano Gobbo; Marco Bergamin; Lucrezia Furian; Andrea Ermolao
European Journal of Applied Physiology · Vol. 121, Issue 7 · pp. 2005-2013 · 2021
Abstract
Purpose Aerobic exercise capacity is reduced in patients with chronic kidney disease, partly due to alterations at the muscular and microvascular level. This study evaluated oxygen uptake (VO 2 ) kinetics as indicator of muscular oxidative metabolism in a population of Kidney Transplant Recipients (KTRs). Methods Two groups of KTRs enrolled 3 ( n = 21) and 12 months ( n = 14) after transplantation and a control group of healthy young adults ( n = 16) underwent cardiopulmonary exercise testing on cycle-ergometer. The protocol consisted in two subsequent constant, moderate-load exercise phases with a final incremental test until exhaustion. Results The time constant of VO 2 kinetics was slower in KTRs at 3 and 12 months after transplantation compared to controls (50.4 ± 13.1 s and 43.8 ± 11.6 s vs 28.9 ± 8.4 s, respectively; P < 0.01). Peak VO 2 was lower in KTRs evaluated 3 months after transplantation compared to patients evaluated after 1 year (21.3 ± 4.3 and 26.4 ± 8.0 mL/kg/min; P = 0.04). Blood haemoglobin (Hb) concentration was higher in KTRs evaluated at 12 months (12.8 ± 1.7 vs 14.6 ± 1.7 g/dL; P < 0.01). Among KTRs, τ showed a moderate negative correlation with Peak VO 2 (ρ = − 0.52) and Oxygen uptake efficiency slope (OUES) ( r = − 0.57) while no significant correlation with Hb and peak heart rate. Conclusions KTRs show slower VO 2 kinetics compared to healthy controls. Hb and peak VO 2 seem to improve during the first year after transplantation. VO 2 kinetics were significantly associated with indices of cardiorespiratory fitness, but less with central determinants of aerobic capacity, thus suggesting a potential usefulness of adding this index of muscular oxidative metabolism to functional evaluation in KTRs.