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February 1, 1977Journal of Applied Physiology19 citations

Cardiac glycogen repletion after exercise: influence of synthase and glucose 6-phosphate

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RCR. K. ConleeCTCharles M. Tipton

Key Result

Treadmill exercise to exhaustion in normal and diabetic rats demonstrated an inverse relationship between cardiac glycogen content and glycogen synthase %I activity during recovery.

PICO

P
Population
Normal and alloxan diabetic rats subjected to a treadmill run to exhaustion to evaluate cardiac glycogen repletion.
I
Intervention / Comparator
Treadmill run to exhaustion vs Preexercise values
O
Primary Outcome
Glycogen synthase %I activity, glucose 6-phosphate, and glycogen concentrations

Abstract

Previous studies have shown that cardiac glycogen content is replenished to supranormal levels after exercise. To better understand this phenomenon glycogen synthase (GS) %I activity as well as glucose 6-phosphate (G-6-P) and glycogen (G) concentrations were measured in hearts from normal and alloxan diabetic rats killed at various time intervals before or after a treadmill run to exhaustion. In normal animals at exhaustion G was reduced but GS %I and G-6-P were elevated. During 2-8 h of recovery G was elevated, %I depressed, and G-6-P unchanged when compared to their preexercise values. By contrast, diabetic hearts that had elevated G and low %I were characterized by abnormally high G-6-P concentrations. At exhaustion in these hearts %I increased significantly in response to a decrease in G. These findings suggest that glycogen repletion occurs in normal heart as a result of the combined increases in GS %I and G-6-P levels present at the cessation of work. In both normal and diabetic hearts there exists an inverse relationship between G content and GS %I activity.

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Cite This Study

Conlee et al. (1977) studied Normal and alloxan diabetic rats. Treadmill run to exhaustion vs. Preexercise values was evaluated on Glycogen synthase %I activity, glucose 6-phosphate, and glycogen concentrations. Treadmill exercise to exhaustion in normal and diabetic rats demonstrated an inverse relationship between cardiac glycogen content and glycogen synthase %I activity during recovery.

synapsesocial.com/papers/6a933f88db0fe230f3f8efb5https://doi.org/10.1152/jappl.1977.42.2.240
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