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Multifunctional 3D printing of heterogeneous hydrogel structures

机译:异质水凝胶结构的多功能3D打印

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摘要

Multimaterial additive manufacturing or three-dimensional (3D) printing of hydrogel structures provides the opportunity to engineer geometrically dependent functionalities. However, current fabrication methods are mostly limited to one type of material or only provide one type of functionality. In this paper, we report a novel method of multimaterial deposition of hydrogel structures based on an aspiration-on-demand protocol, in which the constitutive multimaterial segments of extruded filaments were first assembled in liquid state by sequential aspiration of inks into a glass capillary, followed by in situ gel formation. We printed different patterned objects with varying chemical, electrical, mechanical, and biological properties by tuning process and material related parameters, to demonstrate the abilities of this method in producing heterogeneous and multi-functional hydrogel structures. Our results show the potential of proposed method in producing heterogeneous objects with spatially controlled functionalities while preserving structural integrity at the switching interface between different segments. We anticipate that this method would introduce new opportunities in multimaterial additive manufacturing of hydrogels for diverse applications such as biosensors, flexible electronics, tissue engineering and organ printing.
机译:水凝胶结构的多材料增材制造或三维(3D)打印为工程设计几何相关功能提供了机会。然而,当前的制造方法主要限于一种材料或仅提供一种功能。在本文中,我们报告了一种基于按需抽吸协议的水凝胶结构多材料沉积的新方法,该方法中,首先通过将墨水顺序抽吸到玻璃毛细管中,将液态长丝的构成性多材料段首先组装成液态,然后原位形成凝胶。我们通过调整工艺和材料相关参数,印刷了具有不同化学,电气,机械和生物学特性的不同图案对象,以证明该方法在生产异质和多功能水凝胶结构中的能力。我们的结果表明了所提出的方法在生产具有空间受控功能的异构对象的同时保留不同段之间的交换接口处的结构完整性的潜力。我们预计,该方法将为水凝胶的多材料增材制造带来新的机会,以用于各种应用,例如生物传感器,柔性电子,组织工程和器官印刷。

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