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首页> 外文期刊>The Open Biomedical Engineering Journal >Characterization of Hybrid Bioactive Glass-polyvinyl Alcohol Scaffolds Containing a PTHrP-derived Pentapeptide as Implants for Tissue Engineering Applications
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Characterization of Hybrid Bioactive Glass-polyvinyl Alcohol Scaffolds Containing a PTHrP-derived Pentapeptide as Implants for Tissue Engineering Applications

机译:包含PTHrP衍生的五肽作为组织工程应用植入物的混合生物活性玻璃-聚乙烯醇支架的表征。

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Hybrid foam (BG-PVA) with 50 % Bioactive glass (BG) and 50 % polyvinyl alcohol (PVA) was prepared by sol-gel process to produce scaffolds for bone tissue engineering. The pore structure of hydrated foams was evaluated by 3-D confocal microscopy, confirming 70% porosity and interconnected macroporous network. In this study, we assessed the putative advantage of coating with osteostatin pentapeptide into BG-PVA hybrid scaffolds to improve their bioactivity. In vitro cell culture experiments were performed using mouse pre-osteoblastic MC3T3-E1 cell line. The exposure to osteostatin loaded-BG-PVA scaffolds increase cell proliferation in contrast with the unloaded scaffolds. An in vivo study was selected to implant BG-PVA scaffolds, non-coated (Group A) or coated (Group B) with osteostatin into non critical bone defect at rabbit femur. Both groups showed new compact bone formation on implant surface, with lamellae disposed around a haversian canal forming osteons-like structure. We observed signs of inflammation around the implanted unloaded scaffold at one month, but resolved at 3 months. This early inflammation did not occur in Group B; supporting the notion that osteostatin may act as anti-inflammatory inhibitor. On the other hand, Group B showed increased bone formation, as depicted by many new trabeculae partly mineralized in the implant regenerating area, incipient at 1 month and more evident at 3 months after implantation. PVA/BG hybrid scaffolds present a porous structure suitable to support osteoblast proliferation and differentiation. Our in vitro and in vivo findings indicate that osteostatin coating improves the osteogenic features of these scaffolds
机译:通过溶胶-凝胶工艺制备了具有50%生物活性玻璃(BG)和50%聚乙烯醇(PVA)的混合泡沫(BG-PVA),以生产用于骨组织工程的支架。通过3-D共聚焦显微镜评估了水合泡沫的孔结构,确定了70%的孔隙率和相互连接的大孔网络。在这项研究中,我们评估了将骨抑素五肽包被在BG-PVA混合支架中以提高其生物活性的公认优势。使用小鼠成骨前MC3T3-E1细胞系进行体外细胞培养实验。与未加载的支架相比,暴露于骨抑素加载的BG-PVA支架可增加细胞增殖。选择了一项体内研究,将未涂覆(A组)或涂覆(B组)的骨抑素的BG-PVA支架植入兔股骨的非关键性骨缺损中。两组均显示出在植入物表面上新的致密的骨形成,片状细胞围绕在杂物管周围而形成骨样结构。我们在一个月观察到植入的空载支架周围发炎的迹象,但在三个月后消退。 B组没有发生这种早期炎症。支持骨抑素可以作为抗炎抑制剂的观点。另一方面,B组显示出增加的骨形成,如许多新的小梁在植入物再生区域中部分矿化所描绘的,在植入后1个月开始,在植入后3个月时更明显。 PVA / BG混合支架具有适合支持成骨细胞增殖和分化的多孔结构。我们的体外和体内发现表明,抑素涂层可以改善这些支架的成骨特性

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