Inhibition of bone resorption by pamidronate cannot restore normal gain in cortical bone mass and strength in tail-suspended rapidly growing rats

被引:59
作者
Kodama, Y
Nakayama, K
Fuse, H
Fukumoto, S
Kawahara, H
Takahashi, H
Kurokawa, T
Sekiguchi, C
Nakamura, T
Matsumoto, T
机构
[1] UNIV TOKUSHIMA,SCH MED,DEPT INTERNAL MED 1,TOKUSHIMA 770,JAPAN
[2] UNIV TOKYO,SCH MED,DEPT ORTHOPED SURG,TOKYO 113,JAPAN
[3] UNIV TOKYO,SCH MED,DEPT INTERNAL MED 4,BUNKYO KU,TOKYO 113,JAPAN
[4] TEIKOKU HORMONE MFG CO,KAWASAKI,KANAGAWA,JAPAN
[5] NATL SPACE DEV AGCY JAPAN,TSUKUBA,IBARAKI,JAPAN
[6] UNIV OCCUPAT & ENVIRONM HLTH,DEPT ORTHOPED SURG,KITAKYUSHU,FUKUOKA 807,JAPAN
关键词
D O I
10.1359/jbmr.1997.12.7.1058
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
To clarify how the changes in bone formation and resorption affect bone volume and strength after mechanical unloading, the effect of inhibition of bone resorption by a potent bisphosphonate, pamidronate, on bone mineral density (BMD), histology, and strength of hind limb hones was examined using tail-suspended growing rats, Tail suspension for 14 days reduced the gain in the BMD of the femur at both the metaphysis rich in trabecular bone and the diaphysis rich in cortical bone, Treatment with pamidronate increased the total BMD as well as that of the metaphysis of the femur but had almost no effect on the BMD of the diaphysis in both control and tail-suspended rats, Histological examinations revealed that 14-day tail suspension caused a loss of secondary cancellous bone with a reduction in the trabecular number and thickness in comparison with control rats. In the femoral diaphysis, the diameter and cortical bone thickness increased to a lesser degree in tail-suspended rats when compared with rats without tail suspension, and a marked reduction in bone formation and the layers of alkaline phosphatase-positive cells was observed at the periosteal side, Pamidronate treatment increased secondary cancellous bone but could not restore normal growth-induced periosteal bone apposition and bone strength, Because the material strength of the femoral diaphysis at the tissue level was not affected hv pamidronate treatment, the inability of pamidronate to prevent the reduction in physical strength of the femoral diaphysis does not appear to be due to a change in the quality of newly formed bone, These results demonstrate that tail suspension reduces the growth-induced periosteal modelling drift and that the antiresorptive agent pamidronate is unable to restore normal periosteal bone apposition.
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收藏
页码:1058 / 1067
页数:10
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