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骨细胞中Cx43的过表达可防止骨细胞凋亡,并维持衰老小鼠的皮质骨质量。

Cx43 overexpression in osteocytes prevents osteocyte apoptosis and preserves cortical bone quality in aging mice.

作者信息

Davis Hannah M, Aref Mohammad W, Aguilar-Perez Alexandra, Pacheco-Costa Rafael, Allen Kimberly, Valdez Sinai, Herrera Carmen, Atkinson Emily G, Mohammad Arwa, Lopez David, Harris Marie A, Harris Stephen E, Allen Matthew, Bellido Teresita, Plotkin Lilian I

机构信息

Department of Anatomy & Cell Biology, Indiana University School of Medicine, Indianapolis, IN, USA.

The University of Texas Health Science Center at San Antonio, San Antonio, TX, USA.

出版信息

JBMR Plus. 2018 Jul;2(4):206-216. doi: 10.1002/jbm4.10035. Epub 2018 Jan 18.

Abstract

Young, skeletally mature mice lacking Cx43 in osteocytes exhibit increased osteocyte apoptosis and decreased bone strength, resembling the phenotype of old mice. Further, the expression of Cx43 in bone decreases with age, suggesting a contribution of reduced Cx43 levels to the age-related changes in the skeleton. We report herein that Cx43 overexpression in osteocytes achieved by using the DMP1-8kb promoter (Cx43 mice) attenuates the skeletal cortical, but not trabecular bone phenotype of aged, 14-month-old mice. The percentage of Cx43-expressing osteocytes was higher in Cx43 mice, whereas the percentage of Cx43 positive osteoblasts remained similar to wild type (WT) littermate control mice. The percentage of apoptotic osteocytes and osteoblasts was increased in aged WT mice compared to skeletally mature, 6-month-old WT mice, and the percentage of apoptotic osteocytes, but not osteoblasts, was decreased in age-matched Cx43 mice. Aged WT mice exhibited decreased bone formation and increased bone resorption as quantified by histomorphometric analysis and circulating markers, compared to skeletally mature mice. Further, aged WT mice exhibited the expected decrease in bone biomechanical structural and material properties compared to young mice. Cx43 overexpression prevented the increase in osteoclasts and decrease in bone formation on the endocortical surfaces, and the changes in circulating markers in the aged mice. Moreover, the ability of bone to resist damage was preserved in aged Cx43 mice both at the structural and material level. All together, these findings suggest that increased Cx43 expression in osteocytes ameliorates age-induced cortical bone changes by preserving osteocyte viability and maintaining bone formation, leading to improved bone strength.

摘要

骨细胞中缺乏Cx43的幼年骨骼成熟小鼠表现出骨细胞凋亡增加和骨强度降低,类似于老年小鼠的表型。此外,骨骼中Cx43的表达随年龄增长而降低,表明Cx43水平降低与骨骼的年龄相关变化有关。我们在此报告,通过使用DMP1-8kb启动子(Cx43小鼠)在骨细胞中过表达Cx43可减轻14月龄老年小鼠的骨骼皮质骨而非小梁骨表型。Cx43小鼠中表达Cx43的骨细胞百分比更高,而Cx43阳性成骨细胞的百分比与野生型(WT)同窝对照小鼠相似。与骨骼成熟的6月龄WT小鼠相比,老年WT小鼠中凋亡骨细胞和成骨细胞的百分比增加,而在年龄匹配的Cx43小鼠中,凋亡骨细胞而非成骨细胞的百分比降低。与骨骼成熟小鼠相比,通过组织形态计量分析和循环标志物定量显示,老年WT小鼠的骨形成减少,骨吸收增加。此外,与年轻小鼠相比,老年WT小鼠的骨生物力学结构和材料特性出现预期的降低。Cx43过表达可防止老年小鼠内皮质表面破骨细胞增加和骨形成减少以及循环标志物的变化。此外,老年Cx43小鼠的骨骼在结构和材料水平上均保留了抵抗损伤的能力。总之,这些发现表明,骨细胞中Cx43表达增加可通过维持骨细胞活力和保持骨形成来改善年龄诱导的皮质骨变化,从而提高骨强度。

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