Cargando…

Effect of cyclic mechanical loading on immunoinflammatory microenvironment in biofabricating hydroxyapatite scaffold for bone regeneration

It has been proven that the mechanical microenvironment can impact the differentiation of mesenchymal stem cells (MSCs). However, the effect of mechanical stimuli in biofabricating hydroxyapatite scaffolds on the inflammatory response of MSCs remains unclear. This study aimed to investigate the effe...

Descripción completa

Detalles Bibliográficos
Autores principales: Zhang, Penghui, Liu, Xizhe, Guo, Peng, Li, Xianlong, He, Zhongyuan, Li, Zhen, Stoddart, Martin J., Grad, Sibylle, Tian, Wei, Chen, Dafu, Zou, Xuenong, Zhou, Zhiyu, Liu, Shaoyu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: KeAi Publishing 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7960680/
https://www.ncbi.nlm.nih.gov/pubmed/33778191
http://dx.doi.org/10.1016/j.bioactmat.2021.02.024
_version_ 1783665103778873344
author Zhang, Penghui
Liu, Xizhe
Guo, Peng
Li, Xianlong
He, Zhongyuan
Li, Zhen
Stoddart, Martin J.
Grad, Sibylle
Tian, Wei
Chen, Dafu
Zou, Xuenong
Zhou, Zhiyu
Liu, Shaoyu
author_facet Zhang, Penghui
Liu, Xizhe
Guo, Peng
Li, Xianlong
He, Zhongyuan
Li, Zhen
Stoddart, Martin J.
Grad, Sibylle
Tian, Wei
Chen, Dafu
Zou, Xuenong
Zhou, Zhiyu
Liu, Shaoyu
author_sort Zhang, Penghui
collection PubMed
description It has been proven that the mechanical microenvironment can impact the differentiation of mesenchymal stem cells (MSCs). However, the effect of mechanical stimuli in biofabricating hydroxyapatite scaffolds on the inflammatory response of MSCs remains unclear. This study aimed to investigate the effect of mechanical loading on the inflammatory response of MSCs seeded on scaffolds. Cyclic mechanical loading was applied to biofabricate the cell-scaffold composite for 15 min/day over 7, 14, or 21 days. At the predetermined time points, culture supernatant was collected for inflammatory mediator detection, and gene expression was analyzed by qRT-PCR. The results showed that the expression of inflammatory mediators (IL1B and IL8) was downregulated (p < 0.05) and the expression of ALP (p < 0.01) and COL1A1 (p < 0.05) was upregulated under mechanical loading. The cell-scaffold composites biofabricated with or without mechanical loading were freeze-dried to prepare extracellular matrix-based scaffolds (ECM-based scaffolds). Murine macrophages were seeded on the ECM-based scaffolds to evaluate their polarization. The ECM-based scaffolds that were biofabricated with mechanical loading before freeze-drying enhanced the expression of M2 polarization-related biomarkers (Arginase 1 and Mrc1, p < 0.05) of macrophages in vitro and increased bone volume/total volume ratio in vivo. Overall, these findings demonstrated that mechanical loading could dually modulate the inflammatory responses and osteogenic differentiation of MSCs. Besides, the ECM-based scaffolds that were biofabricated with mechanical loading before freeze-drying facilitated the M2 polarization of macrophages in vitro and bone regeneration in vivo. Mechanical loading may be a promising biofabrication strategy for bone biomaterials.
format Online
Article
Text
id pubmed-7960680
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher KeAi Publishing
record_format MEDLINE/PubMed
spelling pubmed-79606802021-03-25 Effect of cyclic mechanical loading on immunoinflammatory microenvironment in biofabricating hydroxyapatite scaffold for bone regeneration Zhang, Penghui Liu, Xizhe Guo, Peng Li, Xianlong He, Zhongyuan Li, Zhen Stoddart, Martin J. Grad, Sibylle Tian, Wei Chen, Dafu Zou, Xuenong Zhou, Zhiyu Liu, Shaoyu Bioact Mater Article It has been proven that the mechanical microenvironment can impact the differentiation of mesenchymal stem cells (MSCs). However, the effect of mechanical stimuli in biofabricating hydroxyapatite scaffolds on the inflammatory response of MSCs remains unclear. This study aimed to investigate the effect of mechanical loading on the inflammatory response of MSCs seeded on scaffolds. Cyclic mechanical loading was applied to biofabricate the cell-scaffold composite for 15 min/day over 7, 14, or 21 days. At the predetermined time points, culture supernatant was collected for inflammatory mediator detection, and gene expression was analyzed by qRT-PCR. The results showed that the expression of inflammatory mediators (IL1B and IL8) was downregulated (p < 0.05) and the expression of ALP (p < 0.01) and COL1A1 (p < 0.05) was upregulated under mechanical loading. The cell-scaffold composites biofabricated with or without mechanical loading were freeze-dried to prepare extracellular matrix-based scaffolds (ECM-based scaffolds). Murine macrophages were seeded on the ECM-based scaffolds to evaluate their polarization. The ECM-based scaffolds that were biofabricated with mechanical loading before freeze-drying enhanced the expression of M2 polarization-related biomarkers (Arginase 1 and Mrc1, p < 0.05) of macrophages in vitro and increased bone volume/total volume ratio in vivo. Overall, these findings demonstrated that mechanical loading could dually modulate the inflammatory responses and osteogenic differentiation of MSCs. Besides, the ECM-based scaffolds that were biofabricated with mechanical loading before freeze-drying facilitated the M2 polarization of macrophages in vitro and bone regeneration in vivo. Mechanical loading may be a promising biofabrication strategy for bone biomaterials. KeAi Publishing 2021-03-09 /pmc/articles/PMC7960680/ /pubmed/33778191 http://dx.doi.org/10.1016/j.bioactmat.2021.02.024 Text en © 2021 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Zhang, Penghui
Liu, Xizhe
Guo, Peng
Li, Xianlong
He, Zhongyuan
Li, Zhen
Stoddart, Martin J.
Grad, Sibylle
Tian, Wei
Chen, Dafu
Zou, Xuenong
Zhou, Zhiyu
Liu, Shaoyu
Effect of cyclic mechanical loading on immunoinflammatory microenvironment in biofabricating hydroxyapatite scaffold for bone regeneration
title Effect of cyclic mechanical loading on immunoinflammatory microenvironment in biofabricating hydroxyapatite scaffold for bone regeneration
title_full Effect of cyclic mechanical loading on immunoinflammatory microenvironment in biofabricating hydroxyapatite scaffold for bone regeneration
title_fullStr Effect of cyclic mechanical loading on immunoinflammatory microenvironment in biofabricating hydroxyapatite scaffold for bone regeneration
title_full_unstemmed Effect of cyclic mechanical loading on immunoinflammatory microenvironment in biofabricating hydroxyapatite scaffold for bone regeneration
title_short Effect of cyclic mechanical loading on immunoinflammatory microenvironment in biofabricating hydroxyapatite scaffold for bone regeneration
title_sort effect of cyclic mechanical loading on immunoinflammatory microenvironment in biofabricating hydroxyapatite scaffold for bone regeneration
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7960680/
https://www.ncbi.nlm.nih.gov/pubmed/33778191
http://dx.doi.org/10.1016/j.bioactmat.2021.02.024
work_keys_str_mv AT zhangpenghui effectofcyclicmechanicalloadingonimmunoinflammatorymicroenvironmentinbiofabricatinghydroxyapatitescaffoldforboneregeneration
AT liuxizhe effectofcyclicmechanicalloadingonimmunoinflammatorymicroenvironmentinbiofabricatinghydroxyapatitescaffoldforboneregeneration
AT guopeng effectofcyclicmechanicalloadingonimmunoinflammatorymicroenvironmentinbiofabricatinghydroxyapatitescaffoldforboneregeneration
AT lixianlong effectofcyclicmechanicalloadingonimmunoinflammatorymicroenvironmentinbiofabricatinghydroxyapatitescaffoldforboneregeneration
AT hezhongyuan effectofcyclicmechanicalloadingonimmunoinflammatorymicroenvironmentinbiofabricatinghydroxyapatitescaffoldforboneregeneration
AT lizhen effectofcyclicmechanicalloadingonimmunoinflammatorymicroenvironmentinbiofabricatinghydroxyapatitescaffoldforboneregeneration
AT stoddartmartinj effectofcyclicmechanicalloadingonimmunoinflammatorymicroenvironmentinbiofabricatinghydroxyapatitescaffoldforboneregeneration
AT gradsibylle effectofcyclicmechanicalloadingonimmunoinflammatorymicroenvironmentinbiofabricatinghydroxyapatitescaffoldforboneregeneration
AT tianwei effectofcyclicmechanicalloadingonimmunoinflammatorymicroenvironmentinbiofabricatinghydroxyapatitescaffoldforboneregeneration
AT chendafu effectofcyclicmechanicalloadingonimmunoinflammatorymicroenvironmentinbiofabricatinghydroxyapatitescaffoldforboneregeneration
AT zouxuenong effectofcyclicmechanicalloadingonimmunoinflammatorymicroenvironmentinbiofabricatinghydroxyapatitescaffoldforboneregeneration
AT zhouzhiyu effectofcyclicmechanicalloadingonimmunoinflammatorymicroenvironmentinbiofabricatinghydroxyapatitescaffoldforboneregeneration
AT liushaoyu effectofcyclicmechanicalloadingonimmunoinflammatorymicroenvironmentinbiofabricatinghydroxyapatitescaffoldforboneregeneration