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首页> 外文期刊>Materials science & engineering >Bioinspired channeled, rhBMP-2-coated β-TCP scaffolds with embedded autologous vascular bundles for increased vascularization and osteogenesis of prefabricated tissue-engineered bone
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Bioinspired channeled, rhBMP-2-coated β-TCP scaffolds with embedded autologous vascular bundles for increased vascularization and osteogenesis of prefabricated tissue-engineered bone

机译:Bioinspired通道,RHBMP-2涂覆的β-TCP支架,具有嵌入自体血管束,用于增加预制组织工程骨的血管化和骨质发生

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摘要

To date, the recovery of large bone defects is a major clinical challenge despite the availability of numerous therapeutic procedures including tissue engineering. Although there is a pressing need for large tissue-engineered constructs, inadequate vascularization remains an insurmountable barrier for successful clinical translation. Considering that vascularization is a prerequisite for osteogenesis, we proposed an advanced design of large customized porous beta-tricalcium phosphate (TCP) scaffolds with biomimetic vascular hierarchy which upon embedding of femoral axial vascular bundles significantly improved overall vascularity of the scaffolds. Such scaffolds also promoted osteogenesis when they were coated with recombinant bone morphogenetic protein-2 (rhBMP-2). Compared to the conventional TCP scaffolds (S), the newly designed multi-channeled beta-TCP (CS) scaffolds led to adequate blood vessels and bone-like tissue formation throughout their porous hierarchy within 4 weeks of implantation. Especially, the scaffolds coated with rhBMP-2 and embedded with flow-through vascular bundle (FVB) were able to form more uniform vascularized bone within 2 weeks post-implantation. Based on the clinical, radiographic, angiographic and histological assessments, the newly designed multi channeled scaffolds were found to be promising for successful recovery of large bone defects.
机译:迄今为止,尽管有许多治疗程序包括组织工程,但大骨缺陷的恢复是一个主要的临床挑战。虽然需要大的组织工程构建体,但血管化不足仍然是成功临床翻译的不可逾越的障碍。考虑到血管化是骨质发生的先决条件,我们提出了一种具有仿生血管层的大型定制多孔β-三钙(TCP)支架的先进设计,其在嵌入股骨轴向血管束时显着改善了支架的整体血管性。当它们涂有重组骨形态发生蛋白-2(rhBMP-2)时,这种支架也促进了骨质发生。与传统的TCP支架相比,新设计的多通道β-TCP(CS)支架在植入的4周内导致其在其多孔层次内的充分血管和骨状组织形成。特别地,涂有RHBMP-2并嵌入流通式血管束(FVB)的支架能够在植入后2周内形成更均匀的血管化骨。基于临床,射线照相,血管造影和组织学评估,发现新设计的多通道支架是有希望成功回收大骨缺陷的。

著录项

  • 来源
    《Materials science & engineering》 |2021年第1期|111389.1-111389.12|共12页
  • 作者单位

    Guangzhou Med Univ Affiliated Stomatol Hosp Guangzhou Inst Oral Dis Key Lab Oral Med Guangzhou 510140 Peoples R China;

    Guangzhou Med Univ Affiliated Stomatol Hosp Guangzhou Inst Oral Dis Key Lab Oral Med Guangzhou 510140 Peoples R China;

    Guangzhou Med Univ Affiliated Stomatol Hosp Guangzhou Inst Oral Dis Key Lab Oral Med Guangzhou 510140 Peoples R China;

    Guangzhou Med Univ Affiliated Stomatol Hosp Guangzhou Inst Oral Dis Key Lab Oral Med Guangzhou 510140 Peoples R China;

    Guangzhou Med Univ Affiliated Stomatol Hosp Guangzhou Inst Oral Dis Key Lab Oral Med Guangzhou 510140 Peoples R China;

    Univ Extremadura Escuela Ingn Ind Dept Ingn Mecan Energet & Mat Avda Elvas S-N Badajoz 06006 Spain;

    Hangzhou Jiu Yuan Gene Engn Co Ltd Hangzhou 3100018 Peoples R China;

    Univ Extremadura Escuela Ingn Ind Dept Ingn Mecan Energet & Mat Avda Elvas S-N Badajoz 06006 Spain;

    Sun Yet Sen Univ Sun Yet Sen Mem Hosp Dept Anaesthesia Yanjiang Rd 120 Guangzhou 510120 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Bone graft substitute; Biomimetic; Multi-channeled scaffold; Vascularization; Osteogenesis;

    机译:骨移植物替代;仿生;多通道支架;血管化;骨肉;

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