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Preparation and characterization of poly (hydroxy butyrate)/chitosan blend scaffolds for tissue engineering applications

机译:聚(羟基丁酸酯)/壳聚糖共混支架的制备与表征

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Background: Poly (hydroxy butyrate) (PHB) is a biodegradable and biocompatible polymer with good mechanical properties. This polymer could be a promising material for scaffolds if some features improve. Materials and Methods: In the present work, new PHB/chitosan blend scaffolds were prepared as a three-dimensional substrate in cartilage tissue engineering. Chitosan in different weight percent was added to PHB and solved in trifluoroacetic acid. Statistical Taguchi method was employed in the design of experiments. Results: The Fourier-transform infrared spectroscopy test revealed that the crystallization of PHB in these blends is suppressed with increasing the amount of chitosan. Scanning electron microscopy images showed a thin and rough top layer with a nodular structure, supported with a porous sub-layer in the surface of the scaffolds. In vitro degradation rate of the scaffolds was higher than pure PHB scaffolds. Maximum degradation rate has been seen for the scaffold with 90% wt. NaCl and 40% wt. chitosan. Conclusions: The obtained results suggest that these newly developed PHB/chitosan blend scaffolds may serve as a three-dimensional substrate in cartilage tissue engineering.
机译:背景:聚(羟基丁酸酯)(PHB)是一种具有良好机械性能的可生物降解和生物相容性聚合物。如果某些功能得到改善,这种聚合物可能是有前途的支架材料。材料和方法:在当前工作中,新的PHB /壳聚糖共混支架被制备为软骨组织工程中的三维基质。将不同重量百分比的壳聚糖添加到PHB中,并溶于三氟乙酸中。实验设计中采用统计田口法。结果:傅里叶变换红外光谱测试表明,随着壳聚糖含量的增加,这些共混物中的PHB结晶受到抑制。扫描电子显微镜图像显示具有结节结构的薄且粗糙的顶层,其在支架表面中由多孔亚层支撑。支架的体外降解率高于纯PHB支架。对于重量百分比为90%的支架,已经看到最大的降解率。 NaCl和40%wt。壳聚糖。结论:获得的结果表明,这些新开发的PHB /壳聚糖共混支架可作为软骨组织工程中的三维底物。

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