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3D-Printable Biodegradable Polyester Tissue Scaffolds for Cell Adhesion

机译:用于细胞粘附的3D可打印的可生物降解的聚酯组织支架

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摘要

Additive manufacturing, or three-dimensional (3D) printing, has emerged as a viable technique for the production of vascularized tissue engineering scaffolds. In this report, a biocompatible and biodegradable poly(tri(ethylene glycol) adipate) dimethacrylate was synthesized and characterized for suitability in soft-tissue scaffolding applications. The polyester dimethacrylate exhibited highly efficient photocuring, hydrolyzability, and 3D printability in a custom microstereolithography system. The photocured polyester film demonstrated significantly improved cell attachment and viability as compared with controls. These results indicate promise of novel, printable polyesters for 3D patterned, vascularized soft-tissue engineering scaffolds.
机译:增材制造或三维(3D)打印已成为生产血管化组织工程支架的可行技术。在此报告中,合成了生物相容性和可生物降解的聚(三(己二酸乙二醇酯)二甲基丙烯酸酯,并对其在软组织支架中的适用性进行了表征。聚酯二甲基丙烯酸酯在定制的微立体光刻系统中表现出高效的光固化性,水解性和3D可印刷性。与对照相比,光固化聚酯膜表现出显着改善的细胞附着和生存能力。这些结果表明有望用于3D图案化,血管化的软组织工程支架的新型可印刷聚酯。

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