首页> 外文期刊>Journal of tissue engineering and regenerative medicine >The effects of different vascular carrier patterns on the angiogenesis and osteogenesis of BMSC-TCP-based tissue-engineered bone in beagle dogs
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The effects of different vascular carrier patterns on the angiogenesis and osteogenesis of BMSC-TCP-based tissue-engineered bone in beagle dogs

机译:不同血管载体模式对BEMSC-TCP基组织工程骨血管生成和骨质发生的影响

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摘要

Bone repair using tissue-engineered bone (TEB) in a large defect or accompanied by a poor recipient vascular bed is a long-standing challenge. Surgical vascular carrier patterns of vascular bundle (VB) and arteriovenous loop (AV loop) have been shown to improve the vascularization and repair capacity of TEB. However, the effects of these different vascular carrier patterns on angiogenesis and osteogenesis in TEB have never been evaluated. Here, TEB was constructed with bone marrow mesenchymal stem cells (BMSCs) and beta-TCP and prevascularized by the VB or AV loop technique in beagle dogs. The vascularization and bone formation in TEB were quantitatively compared using Microfil perfusion, histological examination and CT and micro-CT analyses. The distribution and constitution of the neovasculature were analysed to determine the underlying mechanism of angiogenesis. The results showed that prevascularized TEB generated bone tissue faster and more homogeneously than untreated TEB. The VB technique was found to strike a better balance between bone regeneration and beta-TCP scaffold degradation than the AV loop strategy, which resulted in more vascularization but less bone yield, due to faster degradation of the beta-TCP scaffold. This study indicates that a suitable triangular relationship, composed of bone regeneration, scaffold degradation and vasculature, is critical to TEB construction. Copyright (C) 2015 John Wiley & Sons, Ltd.
机译:在大缺陷中使用组织工程骨(TEB)或伴有贫困受体血管床的骨骼修复是一个长期存在的挑战。已经显示出血管束(VB)和动静脉环(AV环)的外科血管载体图案,提高TEB的血管化和修复能力。然而,从未评估了这些不同血管载体模式对TEB中血管生成和骨发生的影响。这里,TEB用骨髓间充质干细胞(BMSC)和β-TCP构建,并通过Beagle犬的VB或AV环路技术造成血糖。使用微灌注,组织学检查和CT和微型CT分析来定量比较TEB中TEB中的血管化和骨形成。分析新生种的分布和构造以确定血管生成的潜在机制。结果表明,血糖化TEB产生的骨组织比未经治疗的TEB更快,更均匀。发现VB技术在骨再生和β-TCP支架降解之间比AV环策略脱落,导致血管形成的更好,但由于β-TCP支架的速度降解,导致骨骼产生更少。本研究表明,由骨再生,支架降解和脉管系统组成的合适的三角关系对TEB构造至关重要。版权所有(c)2015 John Wiley&Sons,Ltd。

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