Cargando…

Engineered scaffolds based on mesenchymal stem cells/preosteoclasts extracellular matrix promote bone regeneration

Recently, extracellular matrix-based tissue-engineered bone is a promising approach to repairing bone defects, and the seed cells are mostly mesenchymal stem cells. However, bone remodelling is a complex biological process, in which osteoclasts perform bone resorption and osteoblasts dominate bone f...

Descripción completa

Detalles Bibliográficos
Autores principales: Dong, Rui, Bai, Yun, Dai, Jingjin, Deng, Moyuan, Zhao, Chunrong, Tian, Zhansong, Zeng, Fanchun, Liang, Wanyuan, Liu, Lanyi, Dong, Shiwu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: SAGE Publications 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7278336/
https://www.ncbi.nlm.nih.gov/pubmed/32551034
http://dx.doi.org/10.1177/2041731420926918
_version_ 1783543315341246464
author Dong, Rui
Bai, Yun
Dai, Jingjin
Deng, Moyuan
Zhao, Chunrong
Tian, Zhansong
Zeng, Fanchun
Liang, Wanyuan
Liu, Lanyi
Dong, Shiwu
author_facet Dong, Rui
Bai, Yun
Dai, Jingjin
Deng, Moyuan
Zhao, Chunrong
Tian, Zhansong
Zeng, Fanchun
Liang, Wanyuan
Liu, Lanyi
Dong, Shiwu
author_sort Dong, Rui
collection PubMed
description Recently, extracellular matrix-based tissue-engineered bone is a promising approach to repairing bone defects, and the seed cells are mostly mesenchymal stem cells. However, bone remodelling is a complex biological process, in which osteoclasts perform bone resorption and osteoblasts dominate bone formation. The interaction and coupling of these two kinds of cells is the key to bone repair. Therefore, the extracellular matrix secreted by the mesenchymal stem cells alone cannot mimic a complex bone regeneration microenvironment, and the addition of extracellular matrix by preosteoclasts may contribute as an effective strategy for bone regeneration. Here, we established the mesenchymal stem cell/preosteoclast extracellular matrix -based tissue-engineered bones and demonstrated that engineered-scaffolds based on mesenchymal stem cell/ preosteoclast extracellular matrix significantly enhanced osteogenesis in a 3 mm rat femur defect model compared with mesenchymal stem cell alone. The bioactive proteins released from the mesenchymal stem cell/ preosteoclast extracellular matrix based tissue-engineered bones also promoted the migration, adhesion, and osteogenic differentiation of mesenchymal stem cells in vitro. As for the mechanisms, the iTRAQ-labeled mass spectrometry was performed, and 608 differentially expressed proteins were found, including the IGFBP5 and CXCL12. Through in vitro studies, we proved that CXCL12 and IGFBP5 proteins, mainly released from the preosteoclasts, contributed to mesenchymal stem cells migration and osteogenic differentiation, respectively. Overall, our research, for the first time, introduce pre-osteoclast into the tissue engineering of bone and optimize the strategy of constructing extracellular matrix–based tissue-engineered bone using different cells to simulate the natural bone regeneration environment, which provides new sight for bone tissue engineering.
format Online
Article
Text
id pubmed-7278336
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher SAGE Publications
record_format MEDLINE/PubMed
spelling pubmed-72783362020-06-17 Engineered scaffolds based on mesenchymal stem cells/preosteoclasts extracellular matrix promote bone regeneration Dong, Rui Bai, Yun Dai, Jingjin Deng, Moyuan Zhao, Chunrong Tian, Zhansong Zeng, Fanchun Liang, Wanyuan Liu, Lanyi Dong, Shiwu J Tissue Eng Original Article Recently, extracellular matrix-based tissue-engineered bone is a promising approach to repairing bone defects, and the seed cells are mostly mesenchymal stem cells. However, bone remodelling is a complex biological process, in which osteoclasts perform bone resorption and osteoblasts dominate bone formation. The interaction and coupling of these two kinds of cells is the key to bone repair. Therefore, the extracellular matrix secreted by the mesenchymal stem cells alone cannot mimic a complex bone regeneration microenvironment, and the addition of extracellular matrix by preosteoclasts may contribute as an effective strategy for bone regeneration. Here, we established the mesenchymal stem cell/preosteoclast extracellular matrix -based tissue-engineered bones and demonstrated that engineered-scaffolds based on mesenchymal stem cell/ preosteoclast extracellular matrix significantly enhanced osteogenesis in a 3 mm rat femur defect model compared with mesenchymal stem cell alone. The bioactive proteins released from the mesenchymal stem cell/ preosteoclast extracellular matrix based tissue-engineered bones also promoted the migration, adhesion, and osteogenic differentiation of mesenchymal stem cells in vitro. As for the mechanisms, the iTRAQ-labeled mass spectrometry was performed, and 608 differentially expressed proteins were found, including the IGFBP5 and CXCL12. Through in vitro studies, we proved that CXCL12 and IGFBP5 proteins, mainly released from the preosteoclasts, contributed to mesenchymal stem cells migration and osteogenic differentiation, respectively. Overall, our research, for the first time, introduce pre-osteoclast into the tissue engineering of bone and optimize the strategy of constructing extracellular matrix–based tissue-engineered bone using different cells to simulate the natural bone regeneration environment, which provides new sight for bone tissue engineering. SAGE Publications 2020-06-07 /pmc/articles/PMC7278336/ /pubmed/32551034 http://dx.doi.org/10.1177/2041731420926918 Text en © The Author(s) 2020 https://creativecommons.org/licenses/by-nc/4.0/ This article is distributed under the terms of the Creative Commons Attribution-NonCommercial 4.0 License (https://creativecommons.org/licenses/by-nc/4.0/) which permits non-commercial use, reproduction and distribution of the work without further permission provided the original work is attributed as specified on the SAGE and Open Access page (https://us.sagepub.com/en-us/nam/open-access-at-sage).
spellingShingle Original Article
Dong, Rui
Bai, Yun
Dai, Jingjin
Deng, Moyuan
Zhao, Chunrong
Tian, Zhansong
Zeng, Fanchun
Liang, Wanyuan
Liu, Lanyi
Dong, Shiwu
Engineered scaffolds based on mesenchymal stem cells/preosteoclasts extracellular matrix promote bone regeneration
title Engineered scaffolds based on mesenchymal stem cells/preosteoclasts extracellular matrix promote bone regeneration
title_full Engineered scaffolds based on mesenchymal stem cells/preosteoclasts extracellular matrix promote bone regeneration
title_fullStr Engineered scaffolds based on mesenchymal stem cells/preosteoclasts extracellular matrix promote bone regeneration
title_full_unstemmed Engineered scaffolds based on mesenchymal stem cells/preosteoclasts extracellular matrix promote bone regeneration
title_short Engineered scaffolds based on mesenchymal stem cells/preosteoclasts extracellular matrix promote bone regeneration
title_sort engineered scaffolds based on mesenchymal stem cells/preosteoclasts extracellular matrix promote bone regeneration
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7278336/
https://www.ncbi.nlm.nih.gov/pubmed/32551034
http://dx.doi.org/10.1177/2041731420926918
work_keys_str_mv AT dongrui engineeredscaffoldsbasedonmesenchymalstemcellspreosteoclastsextracellularmatrixpromoteboneregeneration
AT baiyun engineeredscaffoldsbasedonmesenchymalstemcellspreosteoclastsextracellularmatrixpromoteboneregeneration
AT daijingjin engineeredscaffoldsbasedonmesenchymalstemcellspreosteoclastsextracellularmatrixpromoteboneregeneration
AT dengmoyuan engineeredscaffoldsbasedonmesenchymalstemcellspreosteoclastsextracellularmatrixpromoteboneregeneration
AT zhaochunrong engineeredscaffoldsbasedonmesenchymalstemcellspreosteoclastsextracellularmatrixpromoteboneregeneration
AT tianzhansong engineeredscaffoldsbasedonmesenchymalstemcellspreosteoclastsextracellularmatrixpromoteboneregeneration
AT zengfanchun engineeredscaffoldsbasedonmesenchymalstemcellspreosteoclastsextracellularmatrixpromoteboneregeneration
AT liangwanyuan engineeredscaffoldsbasedonmesenchymalstemcellspreosteoclastsextracellularmatrixpromoteboneregeneration
AT liulanyi engineeredscaffoldsbasedonmesenchymalstemcellspreosteoclastsextracellularmatrixpromoteboneregeneration
AT dongshiwu engineeredscaffoldsbasedonmesenchymalstemcellspreosteoclastsextracellularmatrixpromoteboneregeneration