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POLY(GLYCEROL SEBACATE) FILMS MODIFIED BY THERMAL PROTEINS FOR CARDIAC TISSUE ENGINEERING

机译:聚(甘油癸二酸酯)由热蛋白质改性的心脏组织工程改性薄膜

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Scaffolds for cardiac tissue engineering must be designed to achieve adequate degradation kinetics and mechanical properties. In this study, bulk modification of poly(glycerol sebacate) (PGS) with different concentrations of thermal proteins (TP) was investigated to tailor the degradation properties of PGS. TP are polyamino acids formed by heating a mixture of amino acids with minimal proportions of glutamic or aspartic acid. The degradation study of TP-PGS was performed in vitro in phosphate buffered saline (PBS) solution over a 21 day period. Results showed that the degradation rate of PGS increased with increasing content of TP. After 21 days in PBS, degradation weight loss values of 9.40% ± 0.07, 7.3% ± 0.8 and 6.0% ± 0.4 were determined for PGS-TP- 2g, PGS-TP-0.01g and PGS-control, respectively. The studies also showed that TP altered the mechanical properties and surface hydrophilicity of PGS.
机译:必须设计用于心脏组织工程的支架,以实现足够的降解动力学和机械性能。在该研究中,研究了具有不同浓度的热蛋白(TP)的聚(甘油癸二酸酯)(PGS)的本体改性,以定制PGS的降解性质。 TP是通过加热具有最小谷氨酸或天冬氨酸的氨基酸的混合物而形成的聚氨基酸。在21天的时间内,在磷酸盐缓冲盐水(PBS)溶液中的体外进行TP-PGS的降解研究。结果表明,PGS的降解率随着TP含量的增加而增加。在PBS的21天后,针对PGS-TP-2G,PGS-TP-0.01G和PGS-Control测定降解体重减轻9.40%±0.07,7.3%±0.8和6.0%±0.4。研究还表明,TP改变了PGS的机械性能和表面亲水性。

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