Decreased insulin action on muscle glucose transport after eccentric contractions in rats

被引:18
|
作者
Asp, S
Richter, EA
机构
[1] Copenhagen Muscle Research Centre, August Krogh Institute, University of Copenhagen
[2] Copenhagen Muscle Research Centre, August Krogh Institute, University of Copenhagen, DK-2100 Copenhagen Ø
关键词
skeletal muscle; insulin resistance;
D O I
10.1152/jappl.1996.81.5.1924
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
We have recently shown that eccentric contractions (Ecc) of rat calf muscles cause muscle damage and decreased glycogen and glucose transporter GLUT-4 protein content in the white (WG) and red gastrocnemius (RG) but not in the soleus (S) (S. Asp, S. Kristiansen, and E. A. Richter. J. Appl. Physiol. 79: 1338-1345, 1995). To study whether these changes affect insulin action, hindlimbs were perfused at three different insulin concentrations (0, 200, and 20,000 mu U/ml)2 days after one-legged eccentric contractions of the calf muscles. Compared with control, basal glucose transport was slightly higher (P < 0.05) in Ecc-WG and -RG, whereas it was lower (P < 0.05) at both submaximal and maximal insulin concentrations in the Ecc-WG and at maximal concentrations in the Ecc-RG. In the Ecc-S, the glucose transport was unchanged in hindquarters perfused in the absence or presence of a submaximal stimulating concentration of insulin, whereas it was slightly (P < 0.05) higher during maximal insulin stimulation compared with control S. At the end of perfusion the glycogen concentrations were lower in both Ecc-gastrocnemius muscles compared with control muscles at all insulin concentrations. Fractional velocity of glycogen synthase increased similarly with increasing insulin concentrations in Ecc- and control WG and RG. We conclude that insulin action on glucose transport but not glycogen synthase activity is impaired in perfused muscle exposed to prior eccentric contractions.
引用
收藏
页码:1924 / 1928
页数:5
相关论文
共 50 条
  • [21] Ranolazine recruits muscle microvasculature and enhances insulin action in rats
    Fu, Zhuo
    Zhao, Lina
    Chai, Weidong
    Dong, Zhenhua
    Cao, Wenhong
    Liu, Zhenqi
    JOURNAL OF PHYSIOLOGY-LONDON, 2013, 591 (20): : 5235 - 5249
  • [22] Metformin treatment enhances insulin-stimulated glucose transport in skeletal muscle of Sprague-Dawley rats
    Borst, SE
    Snellen, HG
    Lai, HL
    LIFE SCIENCES, 2000, 67 (02) : 165 - 174
  • [23] Insulin action on glucose transport and plasma membrane GLUT4 content in skeletal muscle from patients with NIDDM
    Zierath, JR
    He, L
    Guma, A
    Wahlstrom, EO
    Klip, A
    WallbergHenriksson, H
    DIABETOLOGIA, 1996, 39 (10) : 1180 - 1189
  • [24] Cancer causes dysfunctional insulin signaling and glucose transport in a muscle-type-specific manner
    Raun, Steffen H.
    Knudsen, Jonas Roland
    Han, Xiuqing
    Jensen, Thomas E.
    Sylow, Lykke
    FASEB JOURNAL, 2022, 36 (03)
  • [25] Impaired microvascular reactivity after eccentric muscle contractions is not restored by acute ingestion of antioxidants or dietary nitrate
    Larsen, Ryan G.
    Thomsen, Jens M.
    Hirata, Rogerio P.
    Steffensen, Rudi
    Poulsen, Eva R.
    Frokjaer, Jens B.
    Graven-Nielsen, Thomas
    PHYSIOLOGICAL REPORTS, 2019, 7 (13):
  • [26] Insulin Control of Blood Glucose and GLUT4 Expression in the Skeletal Muscle of Septic Rats
    Lu, G. P.
    Cui, P.
    Cheng, Y.
    Lu, Z. J.
    Zhang, L. E.
    Kissoon, N.
    WEST INDIAN MEDICAL JOURNAL, 2015, 64 (02) : 62 - 70
  • [27] ENHANCED GLUCOSE TRANSPORT, BUT NOT PHOSPHORYLATION CAPACITY, AMELIORATES LIPOPOLYSACCHARIDE-INDUCED IMPAIRMENTS IN INSULIN-STIMULATED MUSCLE GLUCOSE UPTAKE
    Otero, Yolanda F.
    Mulligan, Kimberly X.
    Barnes, Tammy M.
    Ford, Eric A.
    Malabanan, Carlo M.
    Zong, Haihong
    Pessin, Jeffrey E.
    Wasserman, David H.
    McGuinness, Owen P.
    SHOCK, 2016, 45 (06): : 677 - 685
  • [28] THE ROLE OF SKELETAL-MUSCLE IN GLUCOSE-TRANSPORT, GLUCOSE-HOMEOSTASIS, AND INSULIN-RESISTANCE - IMPLICATIONS FOR PHYSICAL THERAPY
    SINACORE, DR
    GULVE, EA
    PHYSICAL THERAPY, 1993, 73 (12): : 878 - 891
  • [29] The effect of non-insulin-dependent diabetes mellitus and obesity on glucose transport and phosphorylation in skeletal muscle
    Kelley, DE
    Mintun, MA
    Watkins, SC
    Simoneau, JA
    Jadali, F
    Fredrickson, A
    Beattie, J
    Theriault, R
    JOURNAL OF CLINICAL INVESTIGATION, 1996, 97 (12) : 2705 - 2713
  • [30] Histone deacetylase 5 regulates glucose uptake and insulin action in muscle cells
    Raichur, Suryaprakash
    Teh, Song Hooi
    Ohwaki, Kenji
    Gaur, Vidhi
    Long, Yun Chau
    Hargreaves, Mark
    McGee, Sean L.
    Kusunoki, Jun
    JOURNAL OF MOLECULAR ENDOCRINOLOGY, 2012, 49 (03) : 203 - 211