Differences in insulin-induced glucose uptake and enzyme activity in running rats

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Deutscher übersetzter Titel:Unterschiede in der insulinbedingten Glukoseaufnahme und der Enzymaktivitaet bei laufaktiven Ratten
Autor:Rodnick, Kenneth J.; Mondon, Carl E.; Haskell, William L.; Azhar, Salman; Reaven, Gerald M.
Erschienen in:Journal of applied physiology
Veröffentlicht:68 (1990), 2, S. 513-519, Lit.
Format: Literatur (SPOLIT)
Publikationstyp: Zeitschriftenartikel
Medienart: Gedruckte Ressource
Sprache:Englisch
ISSN:8750-7587, 0021-8987, 0161-7567, 1522-1601
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Erfassungsnummer:PU199102043188
Quelle:BISp

Abstract

To evaluate the relationship between enhanced insulin action and level of exercise training, in vivo glucose uptake was assessed in the absence of added insulin and during insulin-stimulated conditions for three activity levels of voluntarily trained rats (low 2-5 km/day, medium 6-9 km/day, high 11-16 km/day). After rats rested for 24 h and fasted overnight, glucose uptake was estimated by comparing steady-state serum glucose (SSSG) levels at low insulin (SSSI) concentrations achieved during an insulin suppression test. In the absence of added insulin, SSSI averaged 20 micro-U/ml and glucose uptake was similar for high runners and younger weight-matched controls. However, with insulin added to sustain SSSI at ca. 35 micro-U/ml, SSSG was significantly reduced in all runners, with the lowest value attained in high runners. Fasting serum triglycerides were also reduced in all runners, with the lowest values seen in medium and high runners. The concentration of glycogen in liver and select skeletal muscles at the start of the study was not different between trained and control rats, suggesting that enhanced insulin-stimulated glucose uptake was not the result of lower glycogen levels. In addition, glycogen synthase and succinate dehydrogenase activities in biceps femoris muscle were only elevated for high runners, but glycogen synthase activity was not enhanced in plantaris muscle and was decreased in soleus muscle. Verf.-Referat (gekuerzt)