首页> 外文期刊>Journal of biomedical materials research, Part A >Preparation of chitosan/silk fibroin/hydroxyapatite porous scaffold and its characteristics in comparison to bi-component scaffolds
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Preparation of chitosan/silk fibroin/hydroxyapatite porous scaffold and its characteristics in comparison to bi-component scaffolds

机译:壳聚糖/丝素蛋白/羟基磷灰石多孔支架的制备及其与双组分支架相比的特性

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摘要

Composite porous scaffolds have attracted extensive attention in the biomedical material field. The aim of this research was to prepare a novel tri-component composite porous scaffold and to evaluate its relevant properties. The porous scaffold was composed of chitosan (CS), silk fibroin (SF), and nanohydroxyapatite particles (nHA), which we named CS/SFHA scaffold and prepared via salt fractionation method combined with lyophilization. The porous structure was achieved using a porogen (salt), and the pore size was controlled by the size of porogen. To evaluate the characteristics of the tri-component scaffold, three bi-component scaffolds, CS/SF, CSHA, and SFHA, were simultaneously prepared for comparison. The scaffolds were subjected to morphological, micro-structural, and biodegradation analyses. Results demonstrated that all of the scaffolds had pore sizes of 100-300 μm and a porosity of 90.5-96.1%. The biodegradation characteristics of all scaffolds meet the requirements of good biomedical materials. The investigation of the mechanical properties showed that the tri-component scaffold has better properties than the bi-component scaffolds. The in vitro biocompatibility with osteoblast-like MG-63 cells showed that all the scaffolds are suitable for cell attachment and proliferation; however, the CS/SFHA composite porous scaffold is much more effective than the others.
机译:复合多孔支架在生物医学材料领域引起了广泛的关注。这项研究的目的是制备一种新型的三组分复合多孔支架并评估其相关性能。多孔支架由壳聚糖(CS),丝素蛋白(SF)和纳米羟基磷灰石颗粒(nHA)组成,我们将其命名为CS / SF / nHA支架,并通过盐分法和冻干法制备。使用成孔剂(盐)获得多孔结构,并且孔径由成孔剂的大小控制。为了评估三组分支架的特性,同时准备了三种双组分支架CS / SF,CS / nHA和SF / nHA进行比较。支架进行了形态,微观结构和生物降解分析。结果表明,所有支架的孔径为100-300μm,孔隙率为90.5-96.1%。所有支架的生物降解特性均符合优质生物医学材料的要求。力学性能研究表明,三组分支架比双组分支架具有更好的性能。与成骨细胞样MG-63细胞的体外生物相容性表明,所有支架均适合细胞附着和增殖。然而,CS / SF / nHA复合多孔支架要比其他支架有效得多。

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