Literature DB >> 29978155

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

Hannah M Davis1, Mohammad W Aref1, Alexandra Aguilar-Perez1, Rafael Pacheco-Costa1, Kimberly Allen1, Sinai Valdez1, Carmen Herrera1, Emily G Atkinson1, Arwa Mohammad1, David Lopez1, Marie A Harris2, Stephen E Harris2, Matthew Allen1, Teresita Bellido1,3,4, Lilian I Plotkin1,4.   

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 (Cx43OT 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 Cx43OT 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 Cx43OT 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 Cx43OT 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.

Entities:  

Keywords:  aging; apoptosis; connexin 43; genetic animal models; osteocyte

Year:  2018        PMID: 29978155      PMCID: PMC6029870          DOI: 10.1002/jbm4.10035

Source DB:  PubMed          Journal:  JBMR Plus        ISSN: 2473-4039


  33 in total

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