• Title of article

    Effects of eccentric and concentric training on capillarization and myosin heavy chain contents in rat skeletal muscles after hindlimb suspension

  • Author/Authors

    Cornachione، نويسنده , , Anabelle and Caçمo-Benedini، نويسنده , , Letيcia O. and Martinez، نويسنده , , Edson Z. and Neder، نويسنده , , Luciano and Clلudia Mattiello-Sverzut، نويسنده , , Ana، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2011
  • Pages
    6
  • From page
    277
  • To page
    282
  • Abstract
    We studied the effects of different protocols of post-disuse rehabilitation on angiogenesis and myosin heavy chain (MHC) content in rat hindlimb muscles after caudal suspension. Thirty female Wistar rats were divided into five groups: (1) Control I, (2) Control II, (3) Suspended, (4) Suspended trained on declined treadmill, and (5) Suspended trained on flat treadmill. Fragments of the soleus and tibialis anterior (TA) muscles were frozen and processed by electrophoresis and immunohistochemistry (CD31 antibody). Hindlimb suspension caused reduction of capillary/fiber (C/F) ratios and contents of MHC type I (MHCI) in the soleus in parallel to increased capillary density. Flat treadmill protocols increased the content of the MHCI isoform. The C/F ratio was increased by concentric training after hypokinesis, but was not modified by eccentric training, which caused a greater reduction of capillary density compared to the other protocols. In the TA muscle, hindlimb suspension caused a non-significant increase in capillary density and C/F ratio with limited changes in MHC. The present data demonstrate that the different training protocols adopted and the functional performance of the muscles analyzed caused specific changes in capillarization and in the content of the various MHC types.
  • Keywords
    Skeletal muscles , Suspension , treadmill , myosin heavy chain , capillary , Rat
  • Journal title
    Acta Histochemica
  • Serial Year
    2011
  • Journal title
    Acta Histochemica
  • Record number

    1759915