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In Vitro Examination of Poly(glycerol sebacate) Degradation Kinetics: Effects of Porosity and Cure Temperature

机译:聚(甘油癸二酸盐)降解动力学的体外检测:孔隙率和固化温度的影响

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Poly(glycerol sebacate) (PGS) is a biodegradable and biocompatible elastomer that has been used in a wide range of biomedical applications. While a porous format is common for tissue engineering scaffolds, to allow cell ingrowth, PGS degradation has been primarily studied in a nonporous format. The purpose of this research was to investigate the degradation of porous PGS at three frequently used cure temperatures: 120°C, 140°C, and 165°C. The thermal, chemical, mechanical, and morphological changes were examined using thermogravimetric analysis, differential scanning calorimetry, Fourier transform infrared spectroscopy, compression testing, and scanning electron microscopy. Over the course of the 16-week degradation study, the samples' pores collapsed. The specimens cured at 120°C demonstrated the most degradation and became gel-like after 16 weeks. Thermal changes were most evident in the 120°C and 140°C cure PGS specimens, as shifts in the melting and recrystallization temperatures occurred. Porous samples cured at all three temperatures displayed a decrease in compressive modulus after 16 weeks. This in vitro study helped to elucidate the effects of porosity and cure temperature on the biodegradation of PGS and will be valuable for the design of future PGS scaffolds.
机译:聚(甘油癸二酸盐)(PGS)是可生物降解的和生物相容性的弹性体,其已用于各种生物医学应用。虽然多孔格式对于组织工程支架常见,但是为了让细胞产生,PGS降解主要以无孔形式研究。该研究的目的是在三种常用固化温度下研究多孔PGS的降解:120℃,140℃和165℃。使用热量分析,差示扫描量热法,傅里叶变换红外光谱,压缩测试和扫描电子显微镜检查热,化学,机械和形态变化。在16周的降解研究过程中,样品的孔隙塌陷。在120℃下固化的样品证明了最低降解,16周后变化。在120℃和140℃固化PGS样品中,热变化最明显,因为熔融和再结晶温度的变化发生。在所有三个温度下固化的多孔样品显示在16周后的压缩模量减少。这种体外研究有助于阐明孔隙率和固化温度对PG的生物降解的影响,并且对未来PGS支架的设计有价值。

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