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Am J Physiol Regul Integr Comp Physiol 288: R1543-R1552, 2005; doi:10.1152/ajpregu.00285.2004
0363-6119/05 $8.00
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ENVIRONMENTAL, EXERCISE AND RESPIRATORY PHYSIOLOGY

Nandrolone decanoate modulates cell cycle regulation in functionally overloaded rat soleus muscle

Joseph M. McClung,1 Kristen A. Mehl,1 Raymond W. Thompson,1 Larry L. Lowe,2 and James A. Carson1

1Integrative Muscle Biology Laboratory, Division of Applied Physiology, Exercise Science Department, University of South Carolina, and 2Department of Biological Sciences, Benedict College, Columbia, South Carolina

Submitted 29 April 2004 ; accepted in final form 12 January 2005

Functionally overloading rat soleus muscle by synergist ablation induces a rapid increase in mass. Muscle remodeling during the first week of overload is critical for the overload-induced growth. Anabolic steroid modulation of this overload-induced remodeling response is not well understood. The purpose of this study was to determine whether pretreatment with nandrolone decanoate, a clinically administered anabolic steroid, alters muscle morphology and gene expression related to muscle growth during the initiation of functional overload in the rat soleus muscle. Adult (5 mo) male Fisher 344 x Brown Norway rats were randomly assigned to control (Sham), 3-day functional overload (OV), nandrolone decanoate administration (ND), or 3-day functional overload with nandrolone decanoate administration (OV+ND) treatment groups. Morphologically, OV increased the percentage of small (361%) and large (150%) fibers and expanded the ECM 50%. ND administration decreased the 3-day OV induction of small fibers 51% and nuclei associated with the ECM 20%. ND administration also attenuated the induction of cell cycle regulator p21 (64%) and myogenin (37%) mRNAs after 3 days of overload. These data demonstrate that nandrolone decanoate pretreatment can alter morphological and cell cycle regulator expression related to muscle growth at the onset of functional overload.

anabolic steroids; hypertrophy; myogenic regulatory factors



Address for reprint requests and other correspondence: J. A. Carson, Univ. of South Carolina, Dept. of Exercise Science, 1300 Wheat St., Columbia SC 29208 (E-mail: carsonj{at}gwm.sc.edu)




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