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The 3D printing of gelatin methacrylamide cell-laden tissue-engineered constructs with high cell viability

机译:具有高细胞活力的明胶甲基丙烯酰胺细胞载有组织工程的构建体的3D打印

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摘要

In the present study, we report on the combined efforts of material chemistry, engineering and biology as a systemic approach for the fabrication of high viability 3D printed macroporous gelatin methacrylamide constructs. First, we propose the use and optimization of VA-086 as a photo-initiator with enhanced biocompatibility compared to the conventional Irgacure 2959. Second, a parametric study on the printing of gelatins was performed in order to characterize and compare construct architectures. Hereby, the influence of the hydrogel building block concentration, the printing temperature, the printing pressure, the printing speed, and the cell density were analyzed in depth. As a result, scaffolds could be designed having a 100% interconnected pore network in the gelatin concentration range of 10-20 w/v%. In the last part, the fabrication of cell-laden scaffolds was studied, whereby the application for tissue engineering was tested by encapsulation of the hepatocarcinoma cell line (HepG2). Printing pressure and needle shape was revealed to impact the overall cell viability. Mechanically stable cell-laden gelatin methacrylamide scaffolds with high cell viability (>97%) could be printed.
机译:在本研究中,我们报告了材料化学,工程学和生物学的共同努力,以此作为系统方法制造高活性3D打印的大孔明胶甲基丙烯酰胺结构的方法。首先,我们建议使用和优化VA-086作为光引发剂,与传统的Irgacure 2959相比具有增强的生物相容性。其次,进行了明胶印刷的参数研究,以表征和比较构建体结构。因此,深入分析了水凝胶构件浓度,印刷温度,印刷压力,印刷速度和细胞密度的影响。结果,可以将支架设计为在明胶浓度范围为10-20 w / v%的情况下具有100%的互连孔网络。在最后一部分中,研究了载有细胞的支架的制备,从而通过封装肝癌细胞系(HepG2)来测试组织工程的应用。发现印刷压力和针头形状影响整个细胞活力。可以印刷具有高细胞活力(> 97%)的机械稳定的充满细胞的明胶甲基丙烯酰胺支架。

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