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Fabrication of Cell-Adhesion Surface and Capillary Vessel Model by Photolithography

机译:通过光刻法制造细胞粘附表面和毛细管模型

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We have been developing scaffolds of three-dimensional (3D) synthetic vascular prosthesis in tailor-made. Human umbilical vein endothelial cells (HUVECs) attached on the inner surface of the scaffold have anticoagulant effects. Asperity structures of the inner surface are important to cell adhesion. It is important to quantify the inner surface asperity condition of the scaffold by observing HUVECs behavior and morphology. For this purpose, we recreated the inner surface profile of the scaffold on a poly(dimethilsiloxane) (PDMS) substrate by microfabrication. We made semiround convex patterns of resist that had 8 驴m in diameter and 5 驴m high using photolithography, and the concave pattern on the PDMS substrate by printing. We observed HUVECs adhering to the PDMS substrate having concave pattern on it surface. The distribution density of the concaves of the tested pattern is 1600/mm2 or 40,000 in a 25 mm2 area. In addition, we fabricated a capillary vessel model by photolithography, creating a branched capillary tube model that had 13 驴m in diameter. We confirmed that the capillary vessel model had no leakage using a methylene blue solution flow in the channel.
机译:我们一直在量身定制的三维(3D)合成血管假体的脚手架。连接在支架内表面上的人脐静脉内皮细胞(HUVEC)具有抗凝血作用。内表面的粗糙结构对于细胞粘附是重要的。通过观察HUVECS行为和形态来量化支架的内表面抑制条件非常重要。为此目的,我们通过微细加工重现了支架上的支架的内表面轮廓在聚(二甲基硅氧烷)(PDMS)底物上。我们制造了直径为8÷m的抗蚀剂的半沟凸模式,使用光刻法和通过印刷的PDMS基板上的凹形图案。我们观察到uvecs粘附在其表面上具有凹形图案的PDMS基板。测试图案的分布密度为1600 / mm 2 或40,000,以25 mm 2℃区域。此外,我们通过光刻法制造了一种毛细管模型,产生了直径为13÷m的支化毛细管模型。我们确认毛细管模型在通道中使用亚甲基蓝溶液流动没有泄漏。

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