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首页> 外文期刊>Journal of industrial and engineering chemistry >Effect of the pore size in a 3D bioprinted gelatin scaffold on fibroblast proliferation
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Effect of the pore size in a 3D bioprinted gelatin scaffold on fibroblast proliferation

机译:孔径在三维生物印刷胶质型支架上的成纤维细胞增殖中的影响

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Significant efforts have been applied toward fabricating three-dimensional (3D) scaffolds using 3D-bioprinting tissue engineering techniques. Gelatin has been used in 3D-bioprinting to produce designed 3D scaffolds; however, gelatin has a poor printability and is not useful for fabricating desired 3D scaffolds using 3D-bioprinting. In this study, we fabricated pore size controlled 3D gelatin scaffolds with two step 3D-bioprinting approach: a low-temperature (-10 degrees C) freezing step and a crosslinking process. The scaffold was crosslinked with 1-ethyl-3-(3-dimethylaminopropyI)-carbodiimide hydrochloride (EDC) and N-hydroxysuccinimide (NHS). The pore sizes of the produced 3D gelatin scaffolds were approximately 30% smaller than the sizes of the designed pore sizes. The surface morphologies and pore sizes of the 3D gelatin scaffolds were confirmed and measured using scanning electron microscopy (SEM). Human dermal fibroblasts (HDFs) were cultured on a 3D gelatin scaffold to evaluate the effect of the 3D gelatin scaffold pore size on the cell proliferation. After 14 days of culture, HDFs proliferation throughout the 3D gelatin scaffolds prepared with more than 580 mu m pore size was approximately 14% higher than proliferation throughout the 3D gelatin scaffold prepared with a 435 mu m pore size. These results suggested that control over the 3D gelatin scaffold pore size is important for tissue engineering scaffolds. (C) 2018 Published by Elsevier B.V. on behalf of The Korean Society of Industrial and Engineering Chemistry.
机译:使用3D-BioPlint组织工程技术,已经朝向制造三维(3D)支架的重大努力。明胶已被用于3D-BioPlinting,以生产设计的3D支架;然而,明胶具有较差的可印刷性,并且不能使用3D-Bioplinting制造所需的3D支架。在这项研究中,我们用两步3D-Bioplint方法制造了孔径控制的3D明胶支架:低温(-10℃)冷冻步骤和交联过程。将支架与1-乙基-3-(3-二甲基氨基丙烯库)交联 - 碳二醚盐酸盐(EDC)和N-羟基琥珀酰亚胺(NHS)。所产生的3D明胶支架的孔径比设计的孔径的尺寸小约30%。使用扫描电子显微镜(SEM)确认和测量3D明胶支架的表面形态和孔径。人的皮肤成纤维细胞(HDFS)在3D明胶支架上培养,评价3D明胶支架孔径对细胞增殖的影响。经过14天的培养后,用超过580μmmm孔径制备的3D明胶支架中的HDFS增殖大约在3D明胶支架中加热的增殖高约14%,用435μm孔径制备。这些结果表明,对3D明胶脚手架孔径的控制对于组织工程支架很重要。 (c)2018年由elsevier b.v发布。代表朝鲜工程和工程化学学会。

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