Masuki Hideo, Li Minqi, Hasegawa Tomoka, Suzuki Reiko, Ying Guo, Zhusheng Liu, Oda Kimimitsu, Yamamoto Tsuneyuki, Kawanami Masamitsu, Amizuka Norio
Department of Developmental Biology of Hard Tissue, Graduate School of Dental Medicine, Hokkaido University, Sapporo, Japan.
Biomed Res. 2010 Oct;31(5):307-18. doi: 10.2220/biomedres.31.307.
In order to define the osteocytic function in accelerated bone remodeling, we examined the distribution of the osteocytic lacunar-canalicular system (OLCS) and osteocyte-secreting molecules--dentin matrix protein (DMP) 1 and sclerostin--in the epiphyses and cortical bones of osteoprotegerin deficient (OPG(-/-)) mice. Silver impregnation visualized a well-arranged OLCS in the wild-type epiphyses and cortical bone, whereas OPG(-/-) mice had an irregular OLCS in the epiphyses, but well-arranged canaliculi in the cortical bone. DMP1-positive osteocytes were evenly distributed throughout the wild-type epiphyses and cortical bone, as well as the OPG(-/-) cortical bone. However, OPG(-/-) epiphyses revealed weak DMP1-immunoreactivity. Thus, osteocytes appear to synthesize more DMP1 as the OLCS becomes regular. In contrast, sclerostin-immunoreactivity was significantly diminished in the OPG(-/-) epiphyses and cortical bone. In OPG(-/-) epiphyses and cortical bone, triple staining demonstrated few sclerostin-positive osteocytes in the periphery of a thick cell layer of alkaline phosphatase-positive osteoblasts and many tartrate resistant acid phosphatase-positive osteoclasts. Summarizing, the regular distribution of OLCS may affect DMP1 synthesis, while the cellular activities of osteoclasts and osteoblasts rather than the regularity of OLCS may ultimately influence sclerostin synthesis.
为了确定加速骨重塑过程中骨细胞的功能,我们研究了骨保护素缺陷(OPG(-/-))小鼠骨骺和皮质骨中骨细胞腔隙-小管系统(OLCS)以及骨细胞分泌分子——牙本质基质蛋白(DMP)1和硬化蛋白的分布情况。银染显示野生型骨骺和皮质骨中OLCS排列良好,而OPG(-/-)小鼠骨骺中的OLCS不规则,但皮质骨中的小管排列良好。DMP1阳性骨细胞在野生型骨骺、皮质骨以及OPG(-/-)小鼠的皮质骨中均匀分布。然而,OPG(-/-)小鼠骨骺中的DMP1免疫反应较弱。因此,随着OLCS变得规则,骨细胞似乎合成更多的DMP1。相反,OPG(-/-)小鼠骨骺和皮质骨中的硬化蛋白免疫反应显著减弱。在OPG(-/-)小鼠骨骺和皮质骨中,三重染色显示在碱性磷酸酶阳性成骨细胞厚细胞层周边硬化蛋白阳性骨细胞较少,而抗酒石酸酸性磷酸酶阳性破骨细胞较多。总之,OLCS的规则分布可能影响DMP1的合成,而破骨细胞和成骨细胞的细胞活性而非OLCS的规则性可能最终影响硬化蛋白的合成。