4.5 Article

Slow- and fast-twitch hindlimb skeletal muscle phenotypes 12 wk after 5/6 nephrectomy in Wistar rats of both sexes

期刊

AMERICAN JOURNAL OF PHYSIOLOGY-RENAL PHYSIOLOGY
卷 309, 期 7, 页码 F638-F647

出版社

AMER PHYSIOLOGICAL SOC
DOI: 10.1152/ajprenal.00195.2015

关键词

chronic renal failure; uremia; myosin heavy chain; muscle plasticity; gonadal hormones; hypoxia-inducible factor-1 alpha

资金

  1. Instituto de Salud Carlos III [PI14/00467, PI00386]
  2. European Funds
  3. PAI Group [CTS-179]
  4. Junta de Andalucia, Spain [P10-AGR-5963]

向作者/读者索取更多资源

This study describes fiber-type adaptations in hindlimb muscles, the interaction of sex, and the role of hypoxia on this response in 12-wk 5/6 nephrectomized rats (Nx). Contractile, metabolic, and morphological features of muscle fiber types were assessed in the slow-twitch soleus and the fast-twitch tibialis cranialis muscles of Nx rats, and compared with sham-operated controls. Rats of both sexes were considered in both groups. A slow-to-fast fiber-type transformation occurred in the tibialis cranialis of Nx rats, particularly in males. This adaptation was accomplished by impaired oxidative capacity and capillarity, increased glycolytic capacity, and no changes in size and nuclear density of muscle fiber types. An oxidative-to-glycolytic metabolic transformation was also found in the soleus muscle of Nx rats. However, a modest fast-to-slow fiber-type transformation, fiber hypertrophy, and nuclear proliferation were observed in soleus muscle fibers of male, but not of female, Nx rats. Serum testosterone levels decreased by 50% in male but not in female Nx rats. Hypoxia-inducible factor-1 alpha protein level decreased by 42% in the tibialis cranialis muscle of male Nx rats. These data demonstrate that 12 wk of Nx induces a muscle-specific adaptive response in which myofibers do not change (or enlarge minimally) in size and nuclear density, but acquire markedly different contractile and metabolic characteristics, which are accompanied by capillary rarefaction. Muscle function and sex play relevant roles in these adaptations.

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