Metabolic adaptation to reduced muscle blood flow. II. Mechanisms and beneficial effects

Elander, A.; Idström, J.P.; Holm, S.; Scherstén, T.; Bylund-Fellenius, A.C.

American Journal of Physiology 249(1 Pt 1): E70-E76

1985


ISSN/ISBN: 0002-9513
PMID: 4014458
Document Number: 265782
Increased mitochondrial enzyme activities are induced in rat muscles after common iliac artery ligation, giving a 76-93% blood flow reduction, and 6 days of intermittent muscle stimulation. To elucidate the trigger for this enzyme induction, the acute alterations in the metabolite pattern during contractions were evaluated. More pronounced changes in i.m. PO2 [partial pressure of O2], creatine phosphate, ATP/ADP, lactate/pyruate and glycogen were observed in the ligated leg. The benefit of this enzyme alteration was investigated with the hindlimb perfusion technique. Enzymatically adapted and control legs were perfused at reduced flow during contractions. Similar O2 consumption and glucose uptake but a significantly lower lactate release were observed in the adapted legs. A lower lactate level, lactate/pyruvate and a better maintained creatine phosphate/creatine were found in the adapted soleus muscle. The increase of mitochondrial enzymes is preceded by acute alterations in energy metabolites due to intermittent hypoxia during contractions at reduced flow and this enzyme adaptation allows the muscle tissue to maintain a lower anaerobic metabolism and a better energy state during exercise.

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