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基于电沉积的针型艺术装置快速生物打印 3D 设计水凝胶。

Electrodeposition-based rapid bioprinting of 3D-designed hydrogels with a pin art device.

机构信息

Graduate School of Engineering, Tohoku University, Japan.

出版信息

Biofabrication. 2019 May 7;11(3):035018. doi: 10.1088/1758-5090/ab166e.

Abstract

Three-dimensional (3D) designed hydrogels are receiving considerable attention for use in tissue engineering. Herein, we present a novel method for bioprinting 3D hydrogels by electrodeposition with a pin art device. The device consists of a metal substrate and an array of electrode pins that can slide independently. To fabricate a 3D-hydrogel, pins are pushed from the rear with a 3D object to generate a 3D extruded-pin relief of the object; the extruded pins are then inserted into a chitosan/gelatin hydrogel. Due to H consumption at these pins, which collectively act as a cathode, the protonated amino groups of the chitosan become deprotonated, which results in the electrodeposition of the chitosan bound to the gelatin onto the extruded pins. The untreated hydrogel is removed by heating to provide the 3D-designed chitosan/gelatin hydrogel. As a proof of concept, hydrogels of various shapes were fabricated. In addition, cells were successfully cultured in a hydrogel, highlighting its biocompatibility. This method is useful for constructing 3D artificial tissue consisting of hydrogels and cells.

摘要

三维(3D)设计的水凝胶在组织工程中受到广泛关注。本文提出了一种新的基于电沉积的针型艺术装置生物打印 3D 水凝胶的方法。该装置由金属基底和一组可独立滑动的电极针组成。为了制造 3D 水凝胶,从后面推动针,用 3D 物体生成物体的 3D 挤压针浮雕;然后将挤压针插入壳聚糖/明胶水凝胶中。由于这些共同充当阴极的针上的 H 消耗,壳聚糖的质子化氨基被去质子化,导致与明胶结合的壳聚糖电沉积到挤压针上。通过加热除去未处理的水凝胶,得到 3D 设计的壳聚糖/明胶水凝胶。作为概念验证,制造了各种形状的水凝胶。此外,细胞在水凝胶中成功培养,突出了其生物相容性。该方法可用于构建由水凝胶和细胞组成的 3D 人工组织。

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