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条件性缝隙连接蛋白 43 敲除小鼠轴向胫骨压缩加载时骨膜和内皮质的增强反应。

Enhanced periosteal and endocortical responses to axial tibial compression loading in conditional connexin43 deficient mice.

机构信息

Division of Bone and Mineral Diseases, Department of Internal Medicine, Washington University in St Louis, St Louis, Missouri, United States of America.

出版信息

PLoS One. 2012;7(9):e44222. doi: 10.1371/journal.pone.0044222. Epub 2012 Sep 10.

Abstract

The gap junction protein, connexin43 (Cx43) is involved in mechanotransduction in bone. Recent studies using in vivo models of conditional Cx43 gene (Gja1) deletion in the osteogenic linage have generated inconsistent results, with Gja1 ablation resulting in either attenuated or enhanced response to mechanical load, depending upon the skeletal site examined or the type of load applied. To gain further insights on Cx43 and mechanotransduction, we examined bone formation response at both endocortical and periosteal surfaces in 2-month-old mice with conditional Gja1 ablation driven by the Dermo1 promoter (cKO). Relative to wild type (WT) littermates, it requires a larger amount of compressive force to generate the same periosteal strain in cKO mice. Importantly, cKO mice activate periosteal bone formation at a lower strain level than do WT mice, suggesting an increased sensitivity to mechanical load in Cx43 deficiency. Consistently, trabecular bone mass also increases in mutant mice upon load, while it decreases in WT. On the other hand, bone formation actually decreases on the endocortical surface in WT mice upon application of axial mechanical load, and this response is also accentuated in cKO mice. These changes are associated with increase of Cox-2 in both genotypes and further decrease of Sost mRNA in cKO relative to WT bones. Thus, the response of bone forming cells to mechanical load differs between trabecular and cortical components, and remarkably between endocortical and periosteal envelopes. Cx43 deficiency enhances both the periosteal and endocortical response to mechanical load applied as axial compression in growing mice.

摘要

间隙连接蛋白,连接蛋白 43(Cx43)参与骨的机械转导。最近使用条件性 Cx43 基因(Gja1)在成骨谱系中缺失的体内模型的研究产生了不一致的结果,Gja1 缺失导致对机械负荷的反应减弱或增强,具体取决于所检查的骨骼部位或施加的负荷类型。为了进一步了解 Cx43 和机械转导,我们检查了由 Dermo1 启动子(cKO)驱动的条件性 Gja1 缺失的 2 个月大的小鼠的内皮层和骨膜表面的骨形成反应。与野生型(WT)同窝仔相比,cKO 小鼠需要更大的压缩力才能在相同的骨膜应变下产生。重要的是,cKO 小鼠在比 WT 小鼠更低的应变水平下激活骨膜骨形成,表明在 Cx43 缺乏时对机械负荷的敏感性增加。一致地,在负荷下,突变小鼠的小梁骨量增加,而 WT 则减少。另一方面,在施加轴向机械负荷时,WT 小鼠的内皮层表面的骨形成实际上减少,而这种反应在 cKO 小鼠中也更加明显。这些变化与两种基因型中 Cox-2 的增加以及 cKO 中相对于 WT 骨的 Sost mRNA 的进一步减少有关。因此,成骨细胞对机械负荷的反应在小梁和皮质成分之间以及在骨膜和内皮层之间存在差异。Cx43 缺乏增强了生长中的小鼠施加轴向压缩时骨膜和内皮层对机械负荷的反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/932a/3438198/5486e163a483/pone.0044222.g001.jpg

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