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破骨细胞网络;在去负荷时,成骨细胞中诱导 Rankl 和破骨细胞中诱导 Sost,增加骨量的负调控系统。

Osteocyte network; a negative regulatory system for bone mass augmented by the induction of Rankl in osteoblasts and Sost in osteocytes at unloading.

机构信息

Department of Cell Biology, Nagasaki University Graduate School of Biomedical Sciences, Nagasaki, Japan.

出版信息

PLoS One. 2012;7(6):e40143. doi: 10.1371/journal.pone.0040143. Epub 2012 Jun 29.

Abstract

Reduced mechanical stress is a major cause of osteoporosis in the elderly, and the osteocyte network, which comprises a communication system through processes and canaliculi throughout bone, is thought to be a mechanosensor and mechanotransduction system; however, the functions of osteocytes are still controversial and remain to be clarified. Unexpectedly, we found that overexpression of BCL2 in osteoblasts eventually caused osteocyte apoptosis. Osteoblast and osteoclast differentiation were unaffected by BCL2 transgene in vitro. However, the cortical bone mass increased due to enhanced osteoblast function and suppressed osteoclastogenesis at 4 months of age, when the frequency of TUNEL-positive lacunae reached 75%. In the unloaded condition, the trabecular bone mass decreased in both wild-type and BCL2 transgenic mice at 6 weeks of age, while it decreased due to impaired osteoblast function and enhanced osteoclastogenesis in wild-type mice but not in BCL2 transgenic mice at 4 months of age. Rankl and Opg were highly expressed in osteocytes, but Rankl expression in osteoblasts but not in osteocytes was increased at unloading in wild-type mice but not in BCL2 transgenic mice at 4 months of age. Sost was locally induced at unloading in wild-type mice but not in BCL2 transgenic mice, and the dissemination of Sost was severely interrupted in BCL2 transgenic mice, showing the severely impaired osteocyte network. These findings indicate that the osteocyte network is required for the upregulation of Rankl in osteoblasts and Sost in osteocytes in the unloaded condition. These findings suggest that the osteocyte network negatively regulate bone mass by inhibiting osteoblast function and activating osteoclastogenesis, and these functions are augmented in the unloaded condition at least partly through the upregulation of Rankl expression in osteoblasts and that of Sost in osteocytes, although it cannot be excluded that low BCL2 transgene expression in osteoblasts contributed to the enhanced osteoblast function.

摘要

机械应力降低是老年人骨质疏松的主要原因,骨细胞网络由贯穿骨骼的过程和小管组成,被认为是机械感受器和机械转导系统;然而,骨细胞的功能仍存在争议,需要进一步阐明。出乎意料的是,我们发现成骨细胞中 BCL2 的过度表达最终导致了骨细胞凋亡。BCL2 转基因在体外对成骨细胞和破骨细胞的分化没有影响。然而,由于成骨细胞功能增强和破骨细胞生成受到抑制,4 月龄时皮质骨量增加,TUNEL 阳性腔隙的频率达到 75%。在去负荷状态下,野生型和 BCL2 转基因小鼠在 6 周龄时小梁骨量减少,而在 4 月龄时,由于成骨细胞功能受损和破骨细胞生成增强,野生型小鼠的小梁骨量减少,但 BCL2 转基因小鼠则没有。Rankl 和 Opg 在骨细胞中高表达,但在去负荷的野生型小鼠中,Rankl 在成骨细胞中而不是在骨细胞中的表达增加,但在 4 月龄的 BCL2 转基因小鼠中则没有。Sost 在野生型小鼠中去负荷时局部诱导,但在 BCL2 转基因小鼠中则没有,并且 Sost 的传播在 BCL2 转基因小鼠中受到严重干扰,表明骨细胞网络严重受损。这些发现表明,骨细胞网络是在去负荷条件下上调成骨细胞中 Rankl 和骨细胞中 Sost 所必需的。这些发现表明,骨细胞网络通过抑制成骨细胞功能和激活破骨细胞生成来负调控骨量,并且这些功能在去负荷条件下至少部分通过上调成骨细胞中 Rankl 的表达和骨细胞中 Sost 的表达而增强,尽管不能排除成骨细胞中 BCL2 转基因表达降低导致成骨细胞功能增强。

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