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Bioactive Nanoparticle-Gelatin Composite Scaffold with Mechanical Performance Comparable to Cancellous Bones

机译:具有与松质骨相当的机械性能的生物活性纳米颗粒-明胶复合支架

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摘要

Mechanical properties are among the most concerned issues for artificial bone grafting materials. The scaffolds used for bone grafts are either too brittle (glass) or too weak (polymer), and therefore composite scaffolds are naturally expected as the solution. However, despite the intensive studies on composite bone grafting materials, there still lacks a material that could be matched to the natural cancellous bones. In this study, nanosized bioactive particles (BP) with controllable size and good colloidal stability were used to composite with gelatin, forming macroporouS scaffolds. It was found that the mechanical properties of obtained composite scaffolds, in terms of elastic modulus, compressive strength, and strain at failure, could match to that of natural cancellous bones. This is ascribed to the good distribution of particle in matrix and strong interaction between particle and gelatin. Furthermore, the incorporation of BPs endues the composite scaffolds with bioactivity, forming HA upon reacting with simulated body fluid (SBF) within days, thus stimulating preosteoblasts attachment, growth, and proliferation in these scaffolds. Together with their good mechanical properties, these composite scaffolds are promising artificial bone grating materials.
机译:机械性能是人造骨移植材料最关注的问题之一。用于骨移植的支架太脆(玻璃)或太弱(聚合物),因此自然希望将复合支架作为解决方案。然而,尽管对复合骨移植材料进行了深入研究,但仍然缺乏可以与天然松质骨匹配的材料。在这项研究中,具有可控尺寸和良好胶体稳定性的纳米生物活性颗粒(BP)用于与明胶复合,形成大孔支架。结果发现,就弹性模量,抗压强度和破坏应变而言,所获得的复合支架的机械性能可以与天然松质骨的机械性能相匹配。这归因于颗粒在基质中的良好分布以及颗粒与明胶之间的强相互作用。此外,BP的掺入使复合支架具有生物活性,在数天内与模拟体液(SBF)反应形成HA,从而刺激这些支架中的成骨细胞附着,生长和增殖。这些复合支架具有良好的机械性能,是有前途的人造骨光栅材料。

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