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Controllable synthesis and characterization of porous polyvinyl alcohol/hydroxyapatite nanocomposite scaffolds via an in situ colloidal technique

机译:通过原位胶体技术可控合成和表征多孔聚乙烯醇/羟基磷灰石纳米复合材料支架

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摘要

During the last decades, there have been several attempts to combine bioactive materials with biocompatible and biodegradable polymers to create nanocomposite scaffolds with excellent biocompatibility, bioactivity, biodegradability and mechanical properties. In this research, the nanocomposite scaffolds with compositions based on PVA and HAp nanoparticles were successfully prepared using colloidal HAp nanoparticles combined with freeze-drying technique for tissue engineering applications. In addition, the effect of the pH value of the reactive solution and different percentages of PVA and HAp on the synthesis of PVA/HAp nanocomposites were investigated. The SEM observations revealed that the prepared scaffolds were porous with three dimensional microstructures, and in vitro experiments with osteoblast cells indicated an appropriate penetration of the cells into the scaffold's pores, and also the continuous increase in cell aggregation on the scaffolds with increase in the incubation time demonstrated the ability of the scaffolds to support cell growth. According to the obtained results, the nanocomposite scaffolds could be considered as highly bioactive and potential bone tissue engineering implants.
机译:在过去的几十年中,已经进行了几次尝试来将生物活性材料与生物相容性和可生物降解的聚合物结合起来,以产生具有优异的生物相容性,生物活性,生物降解性和机械性能的纳米复合材料支架。在这项研究中,使用胶体HAp纳米粒子结合冷冻干燥技术成功地制备了具有基于PVA和HAp纳米粒子组成的纳米复合支架,用于组织工程应用。此外,研究了反应溶液的pH值以及不同百分比的PVA和HAp对PVA / HAp纳米复合材料合成的影响。 SEM观察表明,制备的支架具有三维结构的多孔性,体外成骨细胞实验表明细胞适当渗透到支架的孔中,并且随着培养的增加,支架上细胞的聚集不断增加。时间证明了支架支持细胞生长的能力。根据获得的结果,纳米复合支架可以被认为是具有高生物活性和潜在的骨组织工程植入物。

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