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NANOMOLDING OF NANOSTRUCTURED BIODEGRADABLE TISSUE ENGINEERING SCAFFOLDS

机译:纳米结构的纳米结构可生物降解组织工程脚手架

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In replica molding or imprinting for industrial applications, robustness and durability of the replica mold are the main requirements. In this study, we demonstrate a replica mold fabrication method for nanohemisphere arrays nanomolding by nickel (Ni) electroforming using the highly ordered nanohemisphere array of the barrier-layer surface of an anodic aluminum oxide (AAO) membrane as the master mold. The feature size of the nanohemispheres can be controlled by using different etching solutions for anodic oxidation of aluminum (Al). Using the Ni replica mold, nanostructured tissue engineering scaffolds in poly(lactic-co-glycolic acid) (PLGA), polylactide (PLA), and chitosan are fabricated by casting. Hot embossing is also conducted to fabricate the nanostructured PC film for anti-fingerprint and anti-reflection. These results indicate that the proposed nanomolding method provides a feasible approach for repetitive production of biodegradable tissue engineering scaffolds with controllable nanostructure.
机译:在复制品或用于工业应用的印记中,复制模具的鲁棒性和耐用性是主要要求。在该研究中,我们用镍(Ni)电铸的纳米塞塞阵列纳米载体的复制模具制造方法用氧化铝氧化物(AaO)膜的势垒层表面的高度有序的纳米角间阵列作为母模。可以通过使用不同的蚀刻溶液来控制纳米单位的特征尺寸,用于铝(Al)的阳极氧化。使用Ni Replica模具,通过铸造制造在聚(乳酸共聚乙醇酸)(PLGA),聚酰胺(PLA)和壳聚糖中的纳米结构组织工程支架。还进行了热压花,以制造用于防指纹和防反射的纳米结构PC膜。这些结果表明,所提出的纳米多载方法提供可行性生产可可控制纳米结构的可生物降解组织工程支架的可行方法。

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