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首页> 外文期刊>Journal of biomaterials science >Poly(ester amide)s based on (L)-lactic acid oligomers and α-amino acids: Influence of the α-amino acid side chain in the poly(ester amide)s properties
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Poly(ester amide)s based on (L)-lactic acid oligomers and α-amino acids: Influence of the α-amino acid side chain in the poly(ester amide)s properties

机译:基于(L)-乳酸低聚物和α-氨基酸的聚(酯酰胺):α-氨基酸侧链对聚(酯酰胺)性能的影响

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摘要

Novel biodegradable and low cytotoxic poly(ester amide)s (PEAs) based on α-amino acids and (L)-lactic acid (L-LA) oligomers were successfully synthesized by interfacial polymerization. The chemical structure of the new polymers was confirmed by spectroscopic analyses. Further characterization suggests that the α-amino acid plays a critical role on the final properties of the PEA. L-phenylalanine provides PEAs with higher glass transition temperature, whereas glycine enhances the crystallinity. The hydrolytic degradation in PBS (pH = 7.4) at 37 °C also depends on the α-amino acid, being faster for glycine-based PEAs. The cytotoxic profiles using fibroblast human cells indicate that the PEAs did not elicit an acute cytotoxic effect. The strategy presented in this work opens the possibility of synthesizing biodegradable PEAs with low citotoxicity by an easy and fast method. It is worth to mention also that the properties of these materials can be fine-tuned only by changing the α-amino acid.
机译:通过界面聚合成功地合成了基于α-氨基酸和(L)-乳酸(L-LA)低聚物的新型可生物降解的,低细胞毒性的聚(酯酰胺)(PEA)。光谱分析证实了新聚合物的化学结构。进一步的表征表明,α-氨基酸对PEA的最终性能起着至关重要的作用。 L-苯丙氨酸为PEA提供了更高的玻璃化转变温度,而甘氨酸增强了结晶度。 PBS(pH = 7.4)在37°C下的水解降解也取决于α-氨基酸,对于基于甘氨酸的PEA而言,水解速度更快。使用成纤维细胞人类细胞的细胞毒性图谱表明,PEA没有引起急性细胞毒性作用。这项工作提出的策略为通过简便快捷的方法合成具有低胞毒性的可生物降解的PEA提供了可能性。还值得一提的是,仅通过改变α-氨基酸就可以微调这些材料的性能。

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