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Beta-endorphin infusion during exercise in rats does not alter hepatic or muscle glycogen

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Autore
Jamurtas, A. Z.; Goldfarb, A. H.; Chung, S. C.; Hegde, S.; Marino, C.; Fatouros, I. G.
Data
2001
DOI
10.1080/026404101317108435
Soggetto
glucagon
gluconeogenesis
glucose
opioid
HIGH-INTENSITY EXERCISE
GLUCOSE-HOMEOSTASIS
ENDOGENOUS OPIOIDS
GLUCAGON
SECRETION
PEPTIDES
INSULIN
GLUCONEOGENESIS
MECHANISMS
METABOLISM
Sport Sciences
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Abstract
The aim of this study was to determine whether beta -endorphin infusion influences liver or muscle glycogen concentration during exercise. Thirty-two rats (Harlan Co., IN, USA) with a body mass of 265-290 g were assigned at random to four groups, each of eight rats: (1) beta -endorphin infusion for 90 min at rest; (2) beta -endorphin infusion for 90 min while running on a rodent treadmill at 22 m.min(-1) and 0% grade; (3) saline infusion (0.9% NaCl) for 90 min at rest; and (4) saline infusion for 90 min while running on a rodent treadmill at 22 m.min(-1) and 0% grade. Beta-endorphin infusion elevated plasma beta -endorphin concentration by 2.5-fold at rest compared with saline infusion at rest, and by two-fold after exercise compared with saline infusion after exercise. Beta-endorphin infusion attenuated exercise-induced glucose concentration but did not alter the fasting hepatic glycogen concentration at rest or after exercise compared with saline infusion. Fasting hepatic glycogen decreased significantly as a result of 90 min of exercise independent of treatment. Deep intermedius muscle glycogen concentration at rest was similar after 90 min of both beta -endorphin and saline infusion and decreased significantly as a result of 90 min of exercise independent of treatment. Our results suggest that liver and muscle glycogenolysis is not responsible for the differences in plasma glucose with beta -endorphin infusion during exercise.
URI
http://hdl.handle.net/11615/28646
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  • Δημοσιεύσεις σε περιοδικά, συνέδρια, κεφάλαια βιβλίων κλπ. [19743]
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