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J Appl Physiol (June 18, 2004). doi:10.1152/japplphysiol.00387.2004
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Submitted on April 8, 2004
Accepted on June 16, 2004

Relationships between maximal muscle oxidative capacity and blood lactate removal after supramaximal exercise and fatigue indexes in humans

Claire Thomas1*, Pascal Sirvent1, Stephane Perrey2, Eric Raynaud1, and Jacques Mercier1

1 Departement de Physiologie, Institut de Biologie, Laboratoire de Physiologie des Interactions EA701, Bvd Henri IV, Montpellier, France
2 EA 2991 Efficience et Deficience Motrice, 700 Av du Pic Saint Loup, Montpellier, France

* To whom correspondence should be addressed. E-mail: thomasclaire{at}wanadoo.fr.

The present study investigated whether blood lactate removal after supramaximal exercise and fatigue indexes measured during continuous and intermittent supramaximal exercises are related to the maximal muscle oxidative capacity in humans with different training status. Lactate recovery curves were obtained after a 1-min all-out exercise. A bi-exponential time function was then used to determine the velocity constant of the slow phase({gamma}2) which denoted the blood lactate removal ability. Fatigue indexes were calculated during all-out (FIAO) and repeated 10-s (FISprint) cycling sprints. Biopsies were taken from the vastus lateralis muscle and maximal ADP-stimulated mitochondrial respiration (Vmax) was evaluated in an oxygraph cell on saponin permeabilized muscle fibers with pyruvate + malate, and glutamate + malate as substrates. Significant relationships were found between {gamma}2 and pyruvate + malate Vmax (r = 0.60, P < 0.05), {gamma}2 and glutamate + malate Vmax (r = 0.66, P < 0.01), and {gamma}2 and citrate synthase activity (r = 0.76, P < 0.01). In addition, {gamma}2, glutamate + malate Vmax and pyruvate + malate Vmax were related to FIAO ({gamma}2 - FIAO: r= 0.85; P < 0.01, Glutamate plus + Vmax - FIAO : r = 0.70, P < 0.01; and Pyruvate + malate Vmax - FIAO: r = 0.63, P < 0.01; respectively) and FISprint ({gamma}2 - FISprint: r = 0.74, P < 0.01; Glutamate + malate Vmax - FISprint: r = 0.64, P < 0.01; and Pyruvate + malate Vmax - FISprint: r = 0.46, P < 0.01, respectively). In conclusion, these results suggested that the maximal muscle oxidative capacity was related to blood lactate removal ability after a 1-min all-out test. Moreover, maximal muscle oxidative capacity and blood lactate removal ability were associated with the delay in the fatigue observed during continuous and intermittent supramaximal exercises in well trained subjects.




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