Exercise training prevents maturation-induced decrease in insulin sensitivity

Author:

Nakai N.1,Shimomura Y.1,Ohsaki N.1,Sato J.1,Oshida Y.1,Ohsawa I.1,Fujitsuka N.1,Sato Y.1

Affiliation:

1. Research Center of Health, Physical Fitness, and Sports, Nagoya University, Japan.

Abstract

We examined the effects of exercise training initiated before maturation or after maturation on insulin sensitivity and glucose transporter GLUT-4 content in membrane fractions of skeletal muscle. Female Wistar rats (4 wk of age) were divided into sedentary and exercise-trained groups. At 12 wk of age, a subset of the trained animals (Tr) was killed along with a subset of sedentary controls (Sed). One-half of the remaining sedentary animals remained sedentary (Sed-Sed) while the other half began exercise training (Sed-Tr). The remaining rats in the original trained group continued to train (Tr-Tr). Euglycemic clamp (insulin infusion rate at 6 mU.kg body wt-1. min-1) was performed at 4, 12, and 27 wk. After euglycemic clamp in all animals except the 4-wk-old, hindlimb (gastrocnemius and part of quadriceps) muscles were removed for preparation of membrane fractions. In sedentary rats, glucose infusion rate (GIR) during euglycemic clamp was decreased from 15.9 mg.kg-1.min-1 at 4 wk of age to 9.8 mg.kg-1.min-1 at 12 wk of age and 9.1 mg.kg-1.min-1 at 27 wk of age. In exercise-trained rats, the GIR was not significantly decreased by maturation (at 12 wk) and further aging (at 27 wk). Initiation of exercise after maturation restored the GIR at 27 wk of age to the same levels as these for the corresponding exercise-trained rats. GLUT-4 content in plasma and intracellular membrane fractions of hindlimb muscle obtained just after euglycemic clamp showed the same trend as the results of GIR. These results suggest that exercise training prevented the maturation-induced decrease in insulin sensitivity. Improvement of insulin sensitivity caused by exercise training was attributed, at least in part, to the increase in insulin-sensitive GLUT-4 on the plasma membrane in skeletal muscle.

Publisher

American Physiological Society

Subject

Physiology (medical),Physiology

Cited by 22 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Molecular signaling mechanisms that mediate exercise training effects on insulin sensitivity;The Journal of Physical Fitness and Sports Medicine;2013

2. The differences of sarcopenia-related phenotypes: effects of gender and population;European Review of Aging and Physical Activity;2011-07-07

3. A cross-sectional study for glucose intolerance of myotonic dystrophy;Journal of the Neurological Sciences;2009-01

4. Loss of Postprandial Insulin Sensitization During Aging;The Journals of Gerontology Series A: Biological Sciences and Medical Sciences;2008-06-01

5. Effects of Continuous Low-carbohydrate Diet after Long-term Exercise on GLUT-4 Protein Content in Rat Skeletal Muscle;Hormone and Metabolic Research;2008-01

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