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3D-Printed Biodegradable Polyester Tissue Scaffolds for Cell Adhesion

机译:用于细胞粘附的3D印刷可生物降解聚酯组织支架

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Synthesis of a novel PTEGA dimethacrylate, characterization of photocured films, initial 3D printing, and cell viability is reported for the first time. These photocured and extracted films demonstrated significantly improved MDA-MB-231 cell viability at 1 day and 7 days as compared to non-tissue culture treated polystyrene. These cells also exhibited a healthy cell morphology, as observed by ESEM. Finally, the suitability of this new polyester oligo-mer for 3D printing was demonstrated with the printing of a cylinder, which models the endothelial tissue target application. These results indicate the potential for 3D-printed polyesters in a wide range of biological applications.
机译:首次报道了一种新型PTEGA二甲基丙烯酸酯,表征光膜,初始3D印刷和细胞活力。与非组织培养处理的聚苯乙烯相比,这些光电化和提取的薄膜在1天和7天内显着改善了MDA-MB-231细胞活力。如ESEM所观察到,这些细胞也表现出健康的细胞形态。最后,通过打印汽缸,对3D打印进行了适用于3D打印的适用性,该汽缸造型的内皮组织目标应用。这些结果表明了在广泛的生物应用中的3D印刷聚酯的可能性。

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