Cargando…

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

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...

Descripción completa

Detalles Bibliográficos
Autores principales: Moriishi, Takeshi, Ito, Takuro, Fukuyama, Ryo, Qin, Xin, Komori, Hisato, Kaneko, Hitomi, Matsuo, Yuki, Yoshida, Noriaki, Komori, Toshihisa
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8948721/
https://www.ncbi.nlm.nih.gov/pubmed/35328592
http://dx.doi.org/10.3390/ijms23063173
_version_ 1784674721412939776
author Moriishi, Takeshi
Ito, Takuro
Fukuyama, Ryo
Qin, Xin
Komori, Hisato
Kaneko, Hitomi
Matsuo, Yuki
Yoshida, Noriaki
Komori, Toshihisa
author_facet Moriishi, Takeshi
Ito, Takuro
Fukuyama, Ryo
Qin, Xin
Komori, Hisato
Kaneko, Hitomi
Matsuo, Yuki
Yoshida, Noriaki
Komori, Toshihisa
author_sort Moriishi, Takeshi
collection PubMed
description 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.
format Online
Article
Text
id pubmed-8948721
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-89487212022-03-26 Sp7 Transgenic Mice with a Markedly Impaired Lacunocanalicular Network Induced Sost and Reduced Bone Mass by Unloading Moriishi, Takeshi Ito, Takuro Fukuyama, Ryo Qin, Xin Komori, Hisato Kaneko, Hitomi Matsuo, Yuki Yoshida, Noriaki Komori, Toshihisa Int J Mol Sci Article 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. MDPI 2022-03-15 /pmc/articles/PMC8948721/ /pubmed/35328592 http://dx.doi.org/10.3390/ijms23063173 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Moriishi, Takeshi
Ito, Takuro
Fukuyama, Ryo
Qin, Xin
Komori, Hisato
Kaneko, Hitomi
Matsuo, Yuki
Yoshida, Noriaki
Komori, Toshihisa
Sp7 Transgenic Mice with a Markedly Impaired Lacunocanalicular Network Induced Sost and Reduced Bone Mass by Unloading
title Sp7 Transgenic Mice with a Markedly Impaired Lacunocanalicular Network Induced Sost and Reduced Bone Mass by Unloading
title_full Sp7 Transgenic Mice with a Markedly Impaired Lacunocanalicular Network Induced Sost and Reduced Bone Mass by Unloading
title_fullStr Sp7 Transgenic Mice with a Markedly Impaired Lacunocanalicular Network Induced Sost and Reduced Bone Mass by Unloading
title_full_unstemmed Sp7 Transgenic Mice with a Markedly Impaired Lacunocanalicular Network Induced Sost and Reduced Bone Mass by Unloading
title_short Sp7 Transgenic Mice with a Markedly Impaired Lacunocanalicular Network Induced Sost and Reduced Bone Mass by Unloading
title_sort sp7 transgenic mice with a markedly impaired lacunocanalicular network induced sost and reduced bone mass by unloading
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8948721/
https://www.ncbi.nlm.nih.gov/pubmed/35328592
http://dx.doi.org/10.3390/ijms23063173
work_keys_str_mv AT moriishitakeshi sp7transgenicmicewithamarkedlyimpairedlacunocanalicularnetworkinducedsostandreducedbonemassbyunloading
AT itotakuro sp7transgenicmicewithamarkedlyimpairedlacunocanalicularnetworkinducedsostandreducedbonemassbyunloading
AT fukuyamaryo sp7transgenicmicewithamarkedlyimpairedlacunocanalicularnetworkinducedsostandreducedbonemassbyunloading
AT qinxin sp7transgenicmicewithamarkedlyimpairedlacunocanalicularnetworkinducedsostandreducedbonemassbyunloading
AT komorihisato sp7transgenicmicewithamarkedlyimpairedlacunocanalicularnetworkinducedsostandreducedbonemassbyunloading
AT kanekohitomi sp7transgenicmicewithamarkedlyimpairedlacunocanalicularnetworkinducedsostandreducedbonemassbyunloading
AT matsuoyuki sp7transgenicmicewithamarkedlyimpairedlacunocanalicularnetworkinducedsostandreducedbonemassbyunloading
AT yoshidanoriaki sp7transgenicmicewithamarkedlyimpairedlacunocanalicularnetworkinducedsostandreducedbonemassbyunloading
AT komoritoshihisa sp7transgenicmicewithamarkedlyimpairedlacunocanalicularnetworkinducedsostandreducedbonemassbyunloading