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Versatile Biodegradable Poly(ester amide)s Derived from α-Amino Acids for Vascular Tissue Engineering

机译:源自α-氨基酸的多功能生物可降解聚酯酰胺,用于血管组织工程

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Biodegradable poly(ester amide) (PEA) biomaterials derived from α-amino acids, diols, and diacids are promising materials for biomedical applications such as tissue engineering and drug delivery because of their optimized properties and susceptibility for either hydrolytic or enzymatic degradation. The objective of this work was to synthesize and characterize biodegradable PEAs based on the α-amino acids l-phenylalanine and l-methionine. Four different PEAs were prepared using 1,4-butanediol, 1,6-hexanediol, and sebacic acid by interfacial polymerization. High molecular weight PEAs with narrow polydispersity indices and excellent film-forming properties were obtained. The incubation of these PEAs in PBS and chymotrypsin indicated that the polymers are biodegradable. Human coronary artery smooth muscle cells were cultured on PEA films for 48 h and the results showed a well-spread morphology. Porous 3D scaffolds fabricated from these PEAs were found to have excellent porosities indicating the utility of these polymers for vascular tissue engineering.
机译:衍生自α-氨基酸,二醇和二酸的可生物降解的聚(酯酰胺)(PEA)生物材料由于其优化的性能和对水解或酶促降解的敏感性,是用于生物医学应用(如组织工程和药物输送)的有前途的材料。这项工作的目的是合成和表征基于α-氨基酸1-苯丙氨酸和1-甲硫氨酸的可生物降解的PEA。使用1,4-丁二醇,1,6-己二醇和癸二酸通过界面聚合制备了四种不同的PEA。获得了具有窄的多分散指数和优异的成膜性能的高分子量PEA。这些PEA在PBS和胰凝乳蛋白酶中的孵育表明该聚合物是可生物降解的。将人冠状动脉平滑肌细胞在PEA膜上培养48小时,结果显示形态良好。发现由这些PEA制造的多孔3D支架具有优异的孔隙率,表明这些聚合物可用于血管组织工程。

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