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Sp7 转基因小鼠由于去负荷导致 Lacunocanalicular 网络严重受损,从而引起 Sost 表达和骨量减少。

Sp7 Transgenic Mice with a Markedly Impaired Lacunocanalicular Network Induced Sost and Reduced Bone Mass by Unloading.

机构信息

Department of Cell Biology, Nagasaki University Graduate School of Biomedical Sciences, Nagasaki 852-8588, Japan.

Basic and Translational Research Center for Hard Tissue Disease, Nagasaki University Graduate School of Biomedical Sciences, Nagasaki 852-8588, Japan.

出版信息

Int J Mol Sci. 2022 Mar 15;23(6):3173. doi: 10.3390/ijms23063173.

Abstract

The relationship of lacunocanalicular network structure and mechanoresponse has not been well studied. The lacunocanalicular structures differed in the compression and tension sides, in the regions, and in genders in wild-type femoral cortical bone. The overexpression of Sp7 in osteoblasts resulted in thin and porous cortical bone with increased osteoclasts and apoptotic osteocytes, and the number of canaliculi was half of that in the wild-type mice, leading to a markedly impaired lacunocanalicular network. To investigate the response to unloading, we performed tail suspension. Unloading reduced trabecular and cortical bone in the Sp7 transgenic mice due to reduced bone formation. Sost-positive osteocytes increased by unloading on the compression side, but not on the tension side of cortical bone in the wild-type femurs. However, these differential responses were lost in the Sp7 transgenic femurs. Serum Sost increased in the Sp7 transgenic mice, but not in the wild-type mice. Unloading reduced the Col1a1 and Bglap/Bglap2 expression in the Sp7 transgenic mice but not the wild-type mice. Thus, Sp7 transgenic mice with the impaired lacunocanalicular network induced Sost expression by unloading but lost the differential regulation in the compression and tension sides, and the mice failed to restore bone formation during unloading, implicating the relationship of lacunocanalicular network structure and the regulation of bone formation in mechanoresponse.

摘要

尚不清楚陷窝管网结构与力学响应之间的关系。在野生型股骨皮质骨中,陷窝管网结构在压缩侧和拉伸侧、区域和性别上存在差异。成骨细胞中 Sp7 的过表达导致皮质骨变薄且多孔,破骨细胞和凋亡的骨细胞增多,而管腔数量只有野生型小鼠的一半,导致陷窝管网明显受损。为了研究对去负荷的反应,我们进行了尾部悬吊。由于骨形成减少,Sp7 转基因小鼠的小梁骨和皮质骨减少。去负荷使野生型股骨皮质骨压缩侧的 Sost 阳性骨细胞增加,但拉伸侧没有增加。然而,Sp7 转基因股骨中这些差异反应消失。Sp7 转基因小鼠的血清 Sost 增加,但野生型小鼠没有增加。去负荷降低了 Sp7 转基因小鼠但没有野生型小鼠的 Col1a1 和 Bglap/Bglap2 表达。因此,陷窝管网受损的 Sp7 转基因小鼠通过去负荷诱导 Sost 表达,但失去了在压缩侧和拉伸侧的差异调节,并且小鼠在去负荷期间未能恢复骨形成,表明陷窝管网结构与力学响应中骨形成的调节之间存在关系。

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