Cargando…

Micropatterned photothermal double-layer periosteum with angiogenesis-neurogenesis coupling effect for bone regeneration

The abundant neurovascular network in the periosteal fibrous layer is essential for regulating bone homeostasis and repairing bone defects. However, the majority of the current studies only focus on the structure or function, and most of them merely involve osteogenesis and angiogenesis, lacking an...

Descripción completa

Detalles Bibliográficos
Autores principales: Li, Qing, Liu, Wenbin, Hou, Wen, Wu, Xiaopei, Wei, Wenying, Liu, Jiawei, Hu, Yihe, Dai, Honglian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9826821/
https://www.ncbi.nlm.nih.gov/pubmed/36632630
http://dx.doi.org/10.1016/j.mtbio.2022.100536
_version_ 1784866938983284736
author Li, Qing
Liu, Wenbin
Hou, Wen
Wu, Xiaopei
Wei, Wenying
Liu, Jiawei
Hu, Yihe
Dai, Honglian
author_facet Li, Qing
Liu, Wenbin
Hou, Wen
Wu, Xiaopei
Wei, Wenying
Liu, Jiawei
Hu, Yihe
Dai, Honglian
author_sort Li, Qing
collection PubMed
description The abundant neurovascular network in the periosteal fibrous layer is essential for regulating bone homeostasis and repairing bone defects. However, the majority of the current studies only focus on the structure or function, and most of them merely involve osteogenesis and angiogenesis, lacking an in-depth study of periosteal neurogenesis. In this study, a photothermal double-layer biomimetic periosteum with neurovascular coupling was proposed. The outer layer of biomimetic periosteum is a conventional electrospinning membrane to prevent soft tissue invasion, and the inner layer is an oriented nanofiber membrane to promote cell recruitment and angiogenesis. From the perspective of functional bionics, based on the whitlockite (WH) similar to bone composition, we doped Nd (the trivalent form of neodymium element) in it as the inducing element of photothermal response to prepare photothermal whitlockite (Nd@WH). The sustained release of Mg(2+) in Nd@WH can effectively promote the up-regulation of nerve growth factor (NGF) and vascular endothelial growth factor (VEGF). The release of Ca(2+) and PO(4)(3−) ions and photothermal osteogenesis jointly promote bone regeneration. Under the combined effect of structure and function, the formation of nerves, blood vessels, and related collagens greatly simulates the microenvironment of extracellular matrix and periosteum regeneration and ultimately promotes bone regeneration. In this study, physical and chemical characterization proved that the bionic periosteum has good flexibility and operability. The in vitro cell experiment and in vivo calvarial defect model verified that PPCL/Nd@WH biomimetic periosteum had excellent bone tissue regeneration function compared with other groups. Finally, PPCL/Nd@WH provides a new idea for the design of bionic periosteum.
format Online
Article
Text
id pubmed-9826821
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Elsevier
record_format MEDLINE/PubMed
spelling pubmed-98268212023-01-10 Micropatterned photothermal double-layer periosteum with angiogenesis-neurogenesis coupling effect for bone regeneration Li, Qing Liu, Wenbin Hou, Wen Wu, Xiaopei Wei, Wenying Liu, Jiawei Hu, Yihe Dai, Honglian Mater Today Bio Full Length Article The abundant neurovascular network in the periosteal fibrous layer is essential for regulating bone homeostasis and repairing bone defects. However, the majority of the current studies only focus on the structure or function, and most of them merely involve osteogenesis and angiogenesis, lacking an in-depth study of periosteal neurogenesis. In this study, a photothermal double-layer biomimetic periosteum with neurovascular coupling was proposed. The outer layer of biomimetic periosteum is a conventional electrospinning membrane to prevent soft tissue invasion, and the inner layer is an oriented nanofiber membrane to promote cell recruitment and angiogenesis. From the perspective of functional bionics, based on the whitlockite (WH) similar to bone composition, we doped Nd (the trivalent form of neodymium element) in it as the inducing element of photothermal response to prepare photothermal whitlockite (Nd@WH). The sustained release of Mg(2+) in Nd@WH can effectively promote the up-regulation of nerve growth factor (NGF) and vascular endothelial growth factor (VEGF). The release of Ca(2+) and PO(4)(3−) ions and photothermal osteogenesis jointly promote bone regeneration. Under the combined effect of structure and function, the formation of nerves, blood vessels, and related collagens greatly simulates the microenvironment of extracellular matrix and periosteum regeneration and ultimately promotes bone regeneration. In this study, physical and chemical characterization proved that the bionic periosteum has good flexibility and operability. The in vitro cell experiment and in vivo calvarial defect model verified that PPCL/Nd@WH biomimetic periosteum had excellent bone tissue regeneration function compared with other groups. Finally, PPCL/Nd@WH provides a new idea for the design of bionic periosteum. Elsevier 2022-12-28 /pmc/articles/PMC9826821/ /pubmed/36632630 http://dx.doi.org/10.1016/j.mtbio.2022.100536 Text en © 2023 The Authors https://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 Full Length Article
Li, Qing
Liu, Wenbin
Hou, Wen
Wu, Xiaopei
Wei, Wenying
Liu, Jiawei
Hu, Yihe
Dai, Honglian
Micropatterned photothermal double-layer periosteum with angiogenesis-neurogenesis coupling effect for bone regeneration
title Micropatterned photothermal double-layer periosteum with angiogenesis-neurogenesis coupling effect for bone regeneration
title_full Micropatterned photothermal double-layer periosteum with angiogenesis-neurogenesis coupling effect for bone regeneration
title_fullStr Micropatterned photothermal double-layer periosteum with angiogenesis-neurogenesis coupling effect for bone regeneration
title_full_unstemmed Micropatterned photothermal double-layer periosteum with angiogenesis-neurogenesis coupling effect for bone regeneration
title_short Micropatterned photothermal double-layer periosteum with angiogenesis-neurogenesis coupling effect for bone regeneration
title_sort micropatterned photothermal double-layer periosteum with angiogenesis-neurogenesis coupling effect for bone regeneration
topic Full Length Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9826821/
https://www.ncbi.nlm.nih.gov/pubmed/36632630
http://dx.doi.org/10.1016/j.mtbio.2022.100536
work_keys_str_mv AT liqing micropatternedphotothermaldoublelayerperiosteumwithangiogenesisneurogenesiscouplingeffectforboneregeneration
AT liuwenbin micropatternedphotothermaldoublelayerperiosteumwithangiogenesisneurogenesiscouplingeffectforboneregeneration
AT houwen micropatternedphotothermaldoublelayerperiosteumwithangiogenesisneurogenesiscouplingeffectforboneregeneration
AT wuxiaopei micropatternedphotothermaldoublelayerperiosteumwithangiogenesisneurogenesiscouplingeffectforboneregeneration
AT weiwenying micropatternedphotothermaldoublelayerperiosteumwithangiogenesisneurogenesiscouplingeffectforboneregeneration
AT liujiawei micropatternedphotothermaldoublelayerperiosteumwithangiogenesisneurogenesiscouplingeffectforboneregeneration
AT huyihe micropatternedphotothermaldoublelayerperiosteumwithangiogenesisneurogenesiscouplingeffectforboneregeneration
AT daihonglian micropatternedphotothermaldoublelayerperiosteumwithangiogenesisneurogenesiscouplingeffectforboneregeneration