Artificial gravity as a countermeasure to microgravity: a pilot study examining the effects on knee extensor and plantar flexor muscle groups
- 1 July 2009
- journal article
- research article
- Published by American Physiological Society in Journal of Applied Physiology
- Vol. 107 (1) , 39-46
- https://doi.org/10.1152/japplphysiol.91130.2008
Abstract
The goal of this project was to examine the effects of artificial gravity (AG) on skeletal muscle strength and key anabolic/catabolic markers known to regulate muscle mass. Two groups of subjects were selected for study: 1) a 21 day-bed rest (BR) group (n = 7) and 2) an AG group (n = 8), which was subjected to 21 days of 6° head-down tilt bed rest plus daily 1-h exposures to AG (2.5 G at the feet). Centrifugation was produced using a short-arm centrifuge with the foot plate ∼220 cm from the center of rotation. The torque-velocity relationships of the knee extensors and plantar flexors of the ankle were determined pre- and posttreatment. Muscle biopsy samples obtained from the vastus lateralis and soleus muscles were used for a series of gene expression analyses (mRNA abundance) of key factors implicated in the anabolic vs. catabolic state of the muscle. Post/pre torque-velocity determinations revealed greater decrements in knee extensor performance in the BR vs. AG group (P < 0.04). The plantar flexors of the AG subjects actually demonstrated a net gain in the torque-velocity relationship, whereas in the BR group, the responses declined (AG vs. BR, P < 0.001). Muscle fiber cross-sectional area decreased by ∼20% in the BR group, whereas no losses were evident in the AG group. RT-PCR analyses of muscle biopsy specimens demonstrated that markers of growth and cytoskeletal integrity were higher in the AG group, whereas catabolic markers were elevated in the BR group. Importantly, these patterns were seen in both muscles. We conclude that paradigms of AG have the potential to maintain the functional, biochemical, and structural homeostasis of skeletal muscle in the face of chronic unloading.Keywords
This publication has 42 references indexed in Scilit:
- Hindlimb casting decreases muscle mass in part by proteasome-dependent proteolysis but independent of protein synthesisAmerican Journal of Physiology-Endocrinology and Metabolism, 2005
- Effects of gender and hypovolemia on sympathetic neural responses to orthostatic stressAmerican Journal of Physiology-Regulatory, Integrative and Comparative Physiology, 2005
- Muscle atrophy and bone loss after 90 days' bed rest and the effects of flywheel resistive exercise and pamidronate: Results from the LTBR studyBone, 2005
- Pretranslational markers of contractile protein expression in human skeletal muscle: effect of limb unloading plus resistance exerciseJournal of Applied Physiology, 2005
- The molecular basis of skeletal muscle atrophyAmerican Journal of Physiology-Cell Physiology, 2004
- Efficacy of a gravity‐independent resistance exercise device as a countermeasure to muscle atrophy during 29‐day bed restActa Physiologica Scandinavica, 2004
- Plasticity of skeletal muscle phenotype: Mechanical consequencesMuscle & Nerve, 2002
- Identification of Ubiquitin Ligases Required for Skeletal Muscle AtrophyScience, 2001
- Post-spaceflight orthostatic intolerance: possible relationship to microgravity-induced plasticity in the vestibular systemBrain Research Reviews, 1998
- Cardiovascular Adaptations to Physical TrainingAnnual Review of Physiology, 1983