High bone mass gained by exercise in growing male mice is increased by subsequent reduced exercise
Open Access
- 1 September 2004
- journal article
- Published by American Physiological Society in Journal of Applied Physiology
- Vol. 97 (3) , 806-810
- https://doi.org/10.1152/japplphysiol.01169.2003
Abstract
Exercise-induced bone gains are lost if exercise ceases. Therefore, continued exercise at a reduced frequency or intensity may be required to maintain these benefits. In this study, we evaluated whether 4 wk of reduced exercise after 4 wk of running exercise in growing male mice results in the maintenance of high bone mass. Five-week-old mice were divided into the following groups: 1) baseline control; 2) 4-wk control; 3) 4-wk exercise; 4) 8-wk control; 5) 4-wk exercise followed by 4-wk cessation of training; and 6) 4-wk exercise followed by reduced exercise at half the frequency. The regimen consisted of exercise 6 days/wk, and the reduced exercise regimen consisted of running 3 days/wk on a treadmill for 30 min/day, at 12 m/min on a 10° uphill slope. Running exercise significantly increased bone mineral density of the femur, periosteal mineral apposition rate, bone formation rate, percent labeled perimeter at the midfemur, and osteogenic activity of bone marrow cells. However, these parameters declined to the age-matched sedentary control after cessation of training. In contrast, the reduced exercise group had significantly higher mineral apposition rate compared with those of the sedentary control and cessation of training groups. Furthermore, bone mineral density for the reduced exercise group was significantly higher than those for the other groups. These results suggest that the high bone formation gained through exercise can be maintained, and bone mass was further increased by subsequent exercise even if the exercise frequency is reduced.Keywords
This publication has 41 references indexed in Scilit:
- Commencing, Continuing and Stopping Brisk Walking: Effects on Bone Mineral Density, Quantitative Ultrasound of Bone and Markers of Bone Metabolism in Postmenopausal WomenOsteoporosis International, 2001
- Retracted: Effect of Deconditioning on Cortical and Cancellous Bone Growth in the Exercise Trained Young RatsJournal of Bone and Mineral Research, 2000
- Differential effect of treadmill exercise on three cancellous bone sites in the young growing ratBone, 1999
- Effect of physical training on bone mineral density in prepubertal girls: A comparative study between impact-loading and non-impact-loading sportsOsteoporosis International, 1998
- Exercise Before Puberty May Confer Residual Benefits in Bone Density in Adulthood: Studies in Active Prepubertal and Retired Female GymnastsJournal of Bone and Mineral Research, 1998
- On Our Age-Related Bone Loss: Insights from a New ParadigmJournal of Bone and Mineral Research, 1997
- Peak bone mass development of females: can young adult women improve their peak bone mass?Journal of the American College of Nutrition, 1996
- Childhood growth, physical activity, and peak bone mass in womenJournal of Bone and Mineral Research, 1995
- Long-term unilateral loading and bone mineral density and content in female squash playersCalcified Tissue International, 1994
- Weight-Bearing Exercise Training and Lumbar Bone Mineral Content in Postmenopausal WomenAnnals of Internal Medicine, 1988