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Force-Induced Osteoclast Apoptosis In Vivo Is Accompanied by Elevation in Transforming Growth Factor β and Osteoprotegerin Expression

Authors :
Hideaki Sakai
Yumiko Miyazaki-Kawashita
Kazuhiro Kanaoka
Yuzo Kato
Tomoki Nakashima
Yasuhiro Kobayashi
Hisatsugu Miyamoto
Fumio Hashimoto
Mitsue Shibata
Kazuhide Kobayashi
Source :
Journal of Bone and Mineral Research. 15:1924-1934
Publication Year :
2000
Publisher :
Wiley, 2000.

Abstract

The mechanism controlling the disappearance of osteoclasts from bone surfaces after bone resorption in vivo is largely unknown. This is because there is no suitable experimental system to trace the final fate of osteoclasts. Here, we used an experimental model of tooth movement in rats to show that preexisting osteoclasts disappeared from the bone surface through apoptosis during a force-induced rapid shift from bone resorption to formation. On the distal alveolar bone surface of the maxillary molar in growing rats, many mature osteoclasts were present. When light tensional force was applied to the bone surface through an orthodontic appliance, these preexisting osteoclasts gradually disappeared. One day after the application of force, about 24% of the osteoclasts exhibited apoptotic morphology and the proportion of apoptotic cells was increased to 41% by day 2, then decreased afterward. These changes were undetectable on the control distal alveolar bone surface, which is free from tensional force. As shown by in situ hybridization, a marked increase in transforming growth factor beta1 (TGF-beta1) and osteoprotegerin (OPG) messenger RNA (mRNA) was observed in the stretched cells on the tensioned distal bone surface, simultaneously with the loss of osteoclasts. Both of these factors are known to have a negative effect on osteoclast recruitment and survival. As early as 2 days after force application, some of these stretched cells were identified as cuboidal osteoblasts showing intense signals for both factors. Our data suggest there may be a sequential link in tensional force applied on the bone lining cells, up-regulation of TGF-beta1/OPG, and disappearance of osteoclasts.

Details

ISSN :
08840431
Volume :
15
Database :
OpenAIRE
Journal :
Journal of Bone and Mineral Research
Accession number :
edsair.doi.dedup.....808f44ff636d16851801483312853b21
Full Text :
https://doi.org/10.1359/jbmr.2000.15.10.1924