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Degeneration of the osteocyte network in the C57BL/6 mouse model of aging

Age-related bone loss and associated fracture risk are major problems in musculoskeletal health. Osteocytes have emerged as key regulators of bone mass and as a therapeutic target for preventing bone loss. As aging is associated with changes in the osteocyte lacunocanalicular system, we focused on t...

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Autores principales: Tiede-Lewis, LeAnn M., Xie, Yixia, Hulbert, Molly A., Campos, Richard, Dallas, Mark R., Dusevich, Vladimir, Bonewald, Lynda F., Dallas, Sarah L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5680562/
https://www.ncbi.nlm.nih.gov/pubmed/29074822
http://dx.doi.org/10.18632/aging.101308
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author Tiede-Lewis, LeAnn M.
Xie, Yixia
Hulbert, Molly A.
Campos, Richard
Dallas, Mark R.
Dusevich, Vladimir
Bonewald, Lynda F.
Dallas, Sarah L.
author_facet Tiede-Lewis, LeAnn M.
Xie, Yixia
Hulbert, Molly A.
Campos, Richard
Dallas, Mark R.
Dusevich, Vladimir
Bonewald, Lynda F.
Dallas, Sarah L.
author_sort Tiede-Lewis, LeAnn M.
collection PubMed
description Age-related bone loss and associated fracture risk are major problems in musculoskeletal health. Osteocytes have emerged as key regulators of bone mass and as a therapeutic target for preventing bone loss. As aging is associated with changes in the osteocyte lacunocanalicular system, we focused on the responsible cellular mechanisms in osteocytes. Bone phenotypic analysis was performed in young-(5mo) and aged-(22mo) C57BL/6 mice and changes in bone structure/geometry correlated with alterations in osteocyte parameters determined using novel multiplexed-3D-confocal imaging techniques. Age-related bone changes analogous to those in humans were observed, including increased cortical diameter, decreased cortical thickness, reduced trabecular BV/TV and cortical porosities. This was associated with a dramatic reduction in osteocyte dendrite number and cell density, particularly in females, where osteocyte dendricity decreased linearly from 5, 12, 18 to 22mo and correlated significantly with cortical bone parameters. Reduced dendricity preceded decreased osteocyte number, suggesting dendrite loss may trigger loss of viability. Age-related degeneration of osteocyte networks may impair bone anabolic responses to loading and gender differences in osteocyte cell body and lacunar fluid volumes we observed in aged mice may lead to gender-related differences in mechanosensitivity. Therapies to preserve osteocyte dendricity and viability may be beneficial for bone health in aging.
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spelling pubmed-56805622017-11-18 Degeneration of the osteocyte network in the C57BL/6 mouse model of aging Tiede-Lewis, LeAnn M. Xie, Yixia Hulbert, Molly A. Campos, Richard Dallas, Mark R. Dusevich, Vladimir Bonewald, Lynda F. Dallas, Sarah L. Aging (Albany NY) Research Paper Age-related bone loss and associated fracture risk are major problems in musculoskeletal health. Osteocytes have emerged as key regulators of bone mass and as a therapeutic target for preventing bone loss. As aging is associated with changes in the osteocyte lacunocanalicular system, we focused on the responsible cellular mechanisms in osteocytes. Bone phenotypic analysis was performed in young-(5mo) and aged-(22mo) C57BL/6 mice and changes in bone structure/geometry correlated with alterations in osteocyte parameters determined using novel multiplexed-3D-confocal imaging techniques. Age-related bone changes analogous to those in humans were observed, including increased cortical diameter, decreased cortical thickness, reduced trabecular BV/TV and cortical porosities. This was associated with a dramatic reduction in osteocyte dendrite number and cell density, particularly in females, where osteocyte dendricity decreased linearly from 5, 12, 18 to 22mo and correlated significantly with cortical bone parameters. Reduced dendricity preceded decreased osteocyte number, suggesting dendrite loss may trigger loss of viability. Age-related degeneration of osteocyte networks may impair bone anabolic responses to loading and gender differences in osteocyte cell body and lacunar fluid volumes we observed in aged mice may lead to gender-related differences in mechanosensitivity. Therapies to preserve osteocyte dendricity and viability may be beneficial for bone health in aging. Impact Journals LLC 2017-10-26 /pmc/articles/PMC5680562/ /pubmed/29074822 http://dx.doi.org/10.18632/aging.101308 Text en Copyright: © 2017 Tiede-Lewis et al. http://creativecommons.org/licenses/by/3.0/ This article is distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0/) (CC-BY), which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Research Paper
Tiede-Lewis, LeAnn M.
Xie, Yixia
Hulbert, Molly A.
Campos, Richard
Dallas, Mark R.
Dusevich, Vladimir
Bonewald, Lynda F.
Dallas, Sarah L.
Degeneration of the osteocyte network in the C57BL/6 mouse model of aging
title Degeneration of the osteocyte network in the C57BL/6 mouse model of aging
title_full Degeneration of the osteocyte network in the C57BL/6 mouse model of aging
title_fullStr Degeneration of the osteocyte network in the C57BL/6 mouse model of aging
title_full_unstemmed Degeneration of the osteocyte network in the C57BL/6 mouse model of aging
title_short Degeneration of the osteocyte network in the C57BL/6 mouse model of aging
title_sort degeneration of the osteocyte network in the c57bl/6 mouse model of aging
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5680562/
https://www.ncbi.nlm.nih.gov/pubmed/29074822
http://dx.doi.org/10.18632/aging.101308
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