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Skeletal muscle fiber type-selective effects of acute exercise on insulin-stimulated glucose uptake in insulin-resistant, high-fat-fed rats.
Pataky, Mark W; Yu, Carmen S; Nie, Yilin; Arias, Edward B; Singh, Manak; Mendias, Christopher L; Ploutz-Snyder, Robert J; Cartee, Gregory D.
Afiliação
  • Pataky MW; Muscle Biology Laboratory, School of Kinesiology, University of Michigan , Ann Arbor, Michigan.
  • Yu CS; Muscle Biology Laboratory, School of Kinesiology, University of Michigan , Ann Arbor, Michigan.
  • Nie Y; Muscle Biology Laboratory, School of Kinesiology, University of Michigan , Ann Arbor, Michigan.
  • Arias EB; Muscle Biology Laboratory, School of Kinesiology, University of Michigan , Ann Arbor, Michigan.
  • Singh M; Muscle Biology Laboratory, School of Kinesiology, University of Michigan , Ann Arbor, Michigan.
  • Mendias CL; Hospital for Special Surgery and Department of Physiology and Biophysics, Weill Cornell Medical College , New York, New York.
  • Ploutz-Snyder RJ; Applied Biostatistics Laboratory, University of Michigan , Ann Arbor, Michigan.
  • Cartee GD; Muscle Biology Laboratory, School of Kinesiology, University of Michigan , Ann Arbor, Michigan.
Am J Physiol Endocrinol Metab ; 316(5): E695-E706, 2019 05 01.
Article em En | MEDLINE | ID: mdl-30753114
Insulin-stimulated glucose uptake (GU) by skeletal muscle is enhanced several hours after acute exercise in rats with normal or reduced insulin sensitivity. Skeletal muscle is composed of multiple fiber types, but exercise's effect on fiber type-specific insulin-stimulated GU in insulin-resistant muscle was previously unknown. Male rats were fed a high-fat diet (HFD; 2 wk) and were either sedentary (SED) or exercised (2-h exercise). Other, low-fat diet-fed (LFD) rats remained SED. Rats were studied immediately postexercise (IPEX) or 3 h postexercise (3hPEX). Epitrochlearis muscles from IPEX rats were incubated in 2-deoxy-[3H]glucose (2-[3H]DG) without insulin. Epitrochlearis muscles from 3hPEX rats were incubated with 2-[3H]DG ± 100 µU/ml insulin. After single fiber isolation, GU and fiber type were determined. Glycogen and lipid droplets (LDs) were assessed histochemically. GLUT4 abundance was determined by immunoblotting. In HFD-SED vs. LFD-SED rats, insulin-stimulated GU was decreased in type IIB, IIX, IIAX, and IIBX fibers. Insulin-independent GU IPEX was increased and glycogen content was decreased in all fiber types (types I, IIA, IIB, IIX, IIAX, and IIBX). Exercise by HFD-fed rats enhanced insulin-stimulated GU in all fiber types except type I. Single fiber analyses enabled discovery of striking fiber type-specific differences in HFD and exercise effects on insulin-stimulated GU. The fiber type-specific differences in insulin-stimulated GU postexercise in insulin-resistant muscle were not attributable to a lack of fiber recruitment, as indirectly evidenced by insulin-independent GU and glycogen IPEX, differences in multiple LD indexes, or altered GLUT4 abundance, implicating fiber type-selective differences in the cellular processes responsible for postexercise enhancement of insulin-mediated GLUT4 translocation.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Resistência à Insulina / Fibras Musculares de Contração Lenta / Fibras Musculares de Contração Rápida / Glucose Limite: Animals Idioma: En Ano de publicação: 2019 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Resistência à Insulina / Fibras Musculares de Contração Lenta / Fibras Musculares de Contração Rápida / Glucose Limite: Animals Idioma: En Ano de publicação: 2019 Tipo de documento: Article