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通过液-液3D打印制造具有内部相纳米结构的坚固构建体。

Fabricating Robust Constructs with Internal Phase Nanostructures via Liquid-in-Liquid 3D Printing.

作者信息

Honaryar Houman, LaNasa Jacob A, Lloyd Elisabeth C, Hickey Robert J, Niroobakhsh Zahra

机构信息

Department of Civil & Mechanical Engineering, University of Missouri-Kansas City, Kansas City, MO, 64110, USA.

Department of Materials Science & Engineering, Pennsylvania State University, University Park, PA, 16802, USA.

出版信息

Macromol Rapid Commun. 2021 Nov;42(22):e2100445. doi: 10.1002/marc.202100445. Epub 2021 Oct 13.

Abstract

The ability to print soft materials into predefined architectures with programmable nanostructures and mechanical properties is a necessary requirement for creating synthetic biomaterials that mimic living tissues. However, the low viscosity of common materials and lack of required mechanical properties in the final product present an obstacle to the use of traditional additive manufacturing approaches. Here, a new liquid-in-liquid 3D printing approach is used to successfully fabricate constructs with internal nanostructures using in situ self-assembly during the extrusion of an aqueous solution containing surfactant and photocurable polymer into a stabilizing polar oil bath. Subsequent photopolymerization preserves the nanostructures created due to surfactant self-assembly at the immiscible liquid-liquid interface, which is confirmed by small-angle X-ray scattering. Mechanical properties of the photopolymerized prints are shown to be tunable based on constituent components of the aqueous solution. The reported 3D printing approach expands the range of low-viscosity materials that can be used in 3D printing, and enables robust constructs production with internal nanostructures and spatially defined features. The reported approach has broad applications in regenerative medicine by providing a platform to print self-assembling biomaterials into complex tissue mimics where internal supramolecular structures and their functionality control biological processes, similar to natural extracellular matrices.

摘要

将软材料打印成具有可编程纳米结构和机械性能的预定义结构,是制造模仿活组织的合成生物材料的必要条件。然而,普通材料的低粘度以及最终产品缺乏所需的机械性能,给传统增材制造方法的使用带来了障碍。在此,一种新的液-液3D打印方法被用于在将含有表面活性剂和光固化聚合物的水溶液挤出到稳定的极性油浴过程中,通过原位自组装成功制造具有内部纳米结构的构建体。随后的光聚合作用保留了由于表面活性剂在不混溶的液-液界面自组装而产生的纳米结构,这一点通过小角X射线散射得到证实。光聚合打印件的机械性能显示可根据水溶液的组成成分进行调节。所报道的3D打印方法扩展了可用于3D打印的低粘度材料的范围,并能够生产具有内部纳米结构和空间定义特征的坚固构建体。所报道的方法通过提供一个平台,将自组装生物材料打印成复杂的组织模拟物,其中内部超分子结构及其功能控制生物过程,类似于天然细胞外基质,在再生医学中具有广泛的应用。

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