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在经硫代葡萄糖金处理的小鼠中,卸载诱导的骨质流失受到抑制。

Unloading-induced bone loss was suppressed in gold-thioglucose treated mice.

作者信息

Hino K, Nifuji A, Morinobu M, Tsuji K, Ezura Y, Nakashima K, Yamamoto H, Noda M

机构信息

Department of Molecular Pharmacology, Medical Research Institute, Tokyo Medical and Dental University, Tokyo, Japan.

出版信息

J Cell Biochem. 2006 Oct 15;99(3):845-52. doi: 10.1002/jcb.20935.

Abstract

Loss of mechanical stress causes bone loss. However, the mechanisms underlying the unloading-induced bone loss are largely unknown. Here, we examined the effects of gold-thioglucose (GTG) treatment, which destroys ventromedial hypothalamus (VMH), on unloading-induced bone loss. Unloading reduced bone volume in control (saline-treated) mice. Treatment with GTG-reduced bone mass and in these GTG-treated mice, unloading-induced reduction in bone mass levels was not observed. Unloading reduced the levels of bone formation rate (BFR) and mineral apposition rate (MAR). GTG treatment also reduced these parameters and under this condition, unloading did not further reduce the levels of BFR and MAR. Unloading increased the levels of osteoclast number (Oc.N/BS) and osteoclast surface (Oc.S/BS). GTG treatment did not alter the basal levels of these bone resorption parameters. In contrast to control, GTG treatment suppressed unloading-induced increase in the levels of Oc.N/BS and Oc.S/BS. Unloading reduced the levels of mRNA expression of the genes encoding osteocalcin, type I collagen and Cbfa1 in bone. In contrast, GTG treatment suppressed such unloading-induced reduction of mRNA expression. Unloading also enhanced the levels of fat mass in bone marrow and mRNA expression of the genes encoding PPARgamma2, C/EBPalpha, and C/EBPbeta in bone. In GTG-treated mice, unloading did not increase fat mass and the levels of fat-related mRNA expression. These results indicated that GTG treatment suppressed unloading-induced alteration in bone loss.

摘要

机械应力缺失会导致骨质流失。然而,卸载诱导骨质流失背后的机制在很大程度上尚不清楚。在此,我们研究了破坏腹内侧下丘脑(VMH)的金硫葡萄糖(GTG)处理对卸载诱导骨质流失的影响。卸载降低了对照(生理盐水处理)小鼠的骨体积。GTG处理降低了骨量,并且在这些经GTG处理的小鼠中,未观察到卸载诱导的骨量水平降低。卸载降低了骨形成率(BFR)和矿物质沉积率(MAR)。GTG处理也降低了这些参数,在此条件下,卸载并未进一步降低BFR和MAR的水平。卸载增加了破骨细胞数量(Oc.N/BS)和破骨细胞表面积(Oc.S/BS)。GTG处理并未改变这些骨吸收参数的基础水平。与对照相反,GTG处理抑制了卸载诱导的Oc.N/BS和Oc.S/BS水平增加。卸载降低了骨中编码骨钙素、I型胶原蛋白和Cbfa1的基因的mRNA表达水平。相反,GTG处理抑制了这种卸载诱导的mRNA表达降低。卸载还增加了骨髓中的脂肪量以及骨中编码PPARγ2、C/EBPα和C/EBPβ的基因的mRNA表达。在经GTG处理的小鼠中,卸载并未增加脂肪量和脂肪相关mRNA表达水平。这些结果表明,GTG处理抑制了卸载诱导的骨质流失变化。

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