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Rapid mineralization of porous gelatin scaffolds by electrodeposition for bone tissue engineering

机译:通过电沉积快速矿化多孔明胶支架,用于骨组织工程

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摘要

In bone tissue engineering, rapid mineralization of polymeric scaffolds is of particular importance in protecting the encapsulated therapeutic drugs or growth factors from loss and degradation. Here, we present a simple and rapid approach to the fabrication of mineralized porous scaffolds for bone tissue engineering. In this approach, three-dimensional (3-D) porous gelatin scaffolds were firstly fabricated by freeze-drying followed by an electrodeposition process for mineralization. We show that a high-quality apatite coating on the gelatin scaffold could be achieved within a couple of hours by electrodeposition. Increasing the deposition voltage or electrolyte temperature favored to the formation of large amounts of apatite coatings with compositions dominated by the hydroxyapatite crystals, whereas the presence of ultrasonic field facilitated the production of homogeneous apatite coatings. Moreover, biological assays indicated that the mineralized scaffolds exhibited better support for the proliferation and osteoblastic differentiation of MC3T3-E1 cells over a neat gelatin scaffold, especially for the case of mineralized scaffolds by electrodeposition at 60 °C. Therefore, the method developed would be highly desired for the rapid mineralization of polymer scaffolds in which biological molecules were loaded for functional bone tissue engineering applications.
机译:在骨组织工程中,聚合物支架的快速矿化对于保护封装的治疗药物或生长因子免于丢失和降解特别重要。在这里,我们提出了一种简单而快速的方法来制造用于骨组织工程的矿化多孔支架。在这种方法中,首先通过冷冻干燥,然后进行电沉积过程来矿化三维(3-D)多孔明胶支架。我们表明,通过电沉积可以在几个小时内实现在明胶支架上的高质量磷灰石涂层。增大沉积电压或电解质温度有利于形成大量的组成由羟基磷灰石晶体为主的磷灰石涂层,而超声场的存在促进了均质磷灰石涂层的生产。此外,生物学分析表明,与纯明胶支架相比,矿化的支架对MC3T3-E1细胞的增殖和成骨细胞分化表现出更好的支持,尤其是在60°C下通过电沉积的矿化支架的情况。因此,开发的方法对于聚合物矿床的快速矿化将是非常需要的,其中聚合物分子被装载用于功能性骨组织工程应用。

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