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Am J Physiol Cell Physiol 293: C313-C320, 2007. First published April 4, 2007; doi:10.1152/ajpcell.00573.2006
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MUSCLE CELL BIOLOGY AND CELL MOTILITY

The deleterious effects of bed rest on human skeletal muscle fibers are exacerbated by hypercortisolemia and ameliorated by dietary supplementation

R. H. Fitts,1 J. G. Romatowski,1 J. R. Peters,1 D. Paddon-Jones,2 R. R. Wolfe,2 and A. A. Ferrando2

1Department of Biological Sciences, Marquette University, Milwaukee, Wisconsin; and 2Department of Surgery, The University of Texas Medical Branch, and Shriners Hospitals for Children, Galveston, Texas

Submitted 10 November 2006 ; accepted in final form 27 March 2007

Prolonged inactivity associated with bed rest in a clinical setting or spaceflight is frequently associated with hypercortisolemia and inadequate caloric intake. Here, we determined the effect of 28 days of bed rest (BR); bed rest plus hypercortisolemia (BRHC); and bed rest plus essential amino acid (AA) and carbohydrate (CHO) supplement (BRAA) on the size and function of single slow- and fast-twitch muscle fibers. Supplementing meals, the BRAA group consumed 16.5 g essential amino acids and 30 g sucrose at 1100, 1600, and 2100 h, and the BRHC subjects received 5 daily doses of 10–15 mg of oral hydrocortisone sodium succinate throughout bed rest. Bed rest induced atrophy and loss of force (mN) and power (µN·FL·s–1) in single fibers was exacerbated by hypercortisolemia where soleus peak force declined by 23% in the type I fiber from a prevalue of 0.78 ± 0.02 to 0.60 ± 0.02 mN post bed rest (compared to a 7% decline with bed rest alone) and 27% in the type II fiber (1.10 ± 0.08 vs. 0.81 ± 0.05 mN). In the BRHC group, peak power dropped by 19, 15, and 11% in the soleus type I, and vastus lateralis (VL) type I and II fibers, respectively. The AA/CHO supplement protected against the bed rest-induced loss of peak force in the type I soleus and peak power in the VL type II fibers. These results provide evidence that an AA/CHO supplement might serve as a successful countermeasure to help preserve muscle function during periods of relative inactivity.

isotonic contractile properties; peak force and power; calcium sensitivity; essential amino acids



Address for reprint requests and other correspondence: R. H. Fitts, Marquette Univ., Dept. of Biology, Wehr Life Sciences Bldg., PO Box 1881, Milwaukee, WI 53201-1881 (e-mail: robert.fitts{at}mu.edu)




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