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题名

Fabrication of a bio-instructive scaffold conferred with a favorable microenvironment allowing for superior implant osseointegration and accelerated in situ vascularized bone regeneration via type H vessel formation

作者
通讯作者Pei,Guoxian; Zhang,Zhi Yong
发表日期
2022-03-01
DOI
发表期刊
ISSN
2452-199X
卷号9页码:491-507
摘要

The potential translation of bio-inert polymer scaffolds as bone substitutes is limited by the lack of neovascularization upon implantation and subsequently diminished ingrowth of host bone, most likely resulted from the inability to replicate appropriate endogenous crosstalk between cells. Human umbilical vein endothelial cell-derived decellularized extracellular matrix (HdECM), which contains a collection of angiocrine biomolecules, has recently been demonstrated to mediate endothelial cells(ECs) – osteoprogenitors(OPs) crosstalk. We employed the HdECM to create a PCL (polycaprolactone)/fibrin/HdECM (PFE) hybrid scaffold. We hypothesized PFE scaffold could reconstitute a bio-instructive microenvironment that reintroduces the crosstalk, resulting in vascularized bone regeneration. Following implantation in a rat femoral bone defect, the PFE scaffold demonstrated early vascular infiltration and enhanced bone regeneration by microangiography (μ-AG) and micro-computational tomography (μ-CT). Based on the immunofluorescence studies, PFE mediated the endogenous angiogenesis and osteogenesis with a substantial number of type H vessels and osteoprogenitors. In addition, superior osseointegration was observed by a direct host bone-PCL interface, which was likely attributed to the formation of type H vessels. The bio-instructive microenvironment created by our innovative PFE scaffold made possible superior osseointegration and type H vessel-related bone regeneration. It could become an alternative solution of improving the osseointegration of bone substitutes with the help of induced type H vessels, which could compensate for the inherent biological inertness of synthetic polymers.

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相关链接[Scopus记录]
收录类别
语种
英语
学校署名
通讯
Scopus记录号
2-s2.0-85112507884
来源库
Scopus
引用统计
被引频次[WOS]:25
成果类型期刊论文
条目标识符http://sustech.caswiz.com/handle/2SGJ60CL/243052
专题南方科技大学医院
作者单位
1.Translational Research Centre of Regenerative Medicine and 3D Printing of Guangzhou Medical University,Guangdong Province Engineering Research Center for Biomedical Engineering,State Key Laboratory of Respiratory Disease,The Third Affiliated Hospital of Guangzhou Medical University,Guangzhou,510150,China
2.Hand and Foot Surgery & Plastic Surgery,Affiliated Shunde Hospital of Guangzhou Medical University,Foshan,528315,China
3.Department of Bone & Joint Surgery,Peking University Shenzhen Hospital,Shenzhen,518036,China
4.National & Local Joint Engineering Research Center of Orthopaedic Biomaterials,Peking University Shenzhen Hospital,Shenzhen,518036,China
5.Department of Orthopaedics and Traumatology,The University of Hong Kong,Pokfulam,Hong Kong,999077,China
6.Shenzhen Key Laboratory for Innovative Technology in Orthopaedic Trauma,The University of Hong Kong Shenzhen Hospital,Shenzhen,518053,China
7.The Third Affiliated Hospital of Southern University of Science and Technology,Southern University of Science and Technology,Shenzhen,518055,China
8.Department of Orthopaedic Surgery,The Third Affiliated Hospital of Guangzhou Medical University,Guangzhou,510150,China
9.Medical Technology and Related Equipment Research for Spinal Injury Treatment,City Key Laboratory,The Third Affiliated Hospital of Guangzhou Medical University,Guangzhou,510150,China
通讯作者单位南方科技大学
推荐引用方式
GB/T 7714
He,Yijun,Wang,Wenhao,Lin,Shaozhang,et al. Fabrication of a bio-instructive scaffold conferred with a favorable microenvironment allowing for superior implant osseointegration and accelerated in situ vascularized bone regeneration via type H vessel formation[J]. Bioactive Materials,2022,9:491-507.
APA
He,Yijun.,Wang,Wenhao.,Lin,Shaozhang.,Yang,Yixi.,Song,Lizhi.,...&Zhang,Zhi Yong.(2022).Fabrication of a bio-instructive scaffold conferred with a favorable microenvironment allowing for superior implant osseointegration and accelerated in situ vascularized bone regeneration via type H vessel formation.Bioactive Materials,9,491-507.
MLA
He,Yijun,et al."Fabrication of a bio-instructive scaffold conferred with a favorable microenvironment allowing for superior implant osseointegration and accelerated in situ vascularized bone regeneration via type H vessel formation".Bioactive Materials 9(2022):491-507.
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