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Two-Phase Emulgels for Direct Ink Writing of Skin-Bearing Architectures

机译:两阶段乳化剂,可直接用于承载体系结构的墨水书写

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摘要

Direct ink writing (DIW) provides programmable and customizable platforms to engineer hierarchically organized constructs. However, one-step, facile synthesis of such architectures via DIW has been challenging. This study introduces inks based on two-phase emulgels for direct printing and in situ formation of protecting layers enveloping multicomponent cores, mimicking skin-bearing biological systems. The emulgel consists of a Pickering emulsion with an organic, internal phase containing poly(lactic acid) stabilized by chitin/cellulose nanofibers and a continuous, cross-linkable hydrogel containing cellulose nanofibers and any of the given solid particles. The shear during ink extrusion through nozzles of low surface energy facilitates the generation of the enveloped structures via fast and spontaneous phase separation of the emulgel. The skin-bearing architectures enable control of mass transport as a novel configuration for cargo release. As a demonstration, a hydrophilic molecule is loaded in the hydrogel, which is released through the core and skin, enabling regulation of diffusion and permeation phenomena. This 3D-printed functional material allows independent control of strength owing to the hierarchical construction. The new method of fabrication is proposed as a simple way to achieve protection, regulation, and sensation, taking the example of the functions of skins and cuticles, which are ubiquitous in nature.
机译:直接墨迹书写(DIW)提供了可编程和可定制的平台来设计按层次组织的结构。但是,通过DIW一步一步,轻松地合成此类体系结构一直具有挑战性。这项研究介绍了基于两相乳胶的油墨,用于直接印刷和原位形成包封多组分核的保护层,模仿了带有皮肤的生物系统。乳胶由具有有机内相的Picker乳液组成,该有机相包含通过几丁质/纤维素纳米纤维稳定的聚乳酸和连续的,可交联的,包含纤维素纳米纤维和任何给定固体颗粒的水凝胶。通过低表面能喷嘴的油墨挤出过程中的剪切力通过乳胶的快速和自发相分离促进了包封结构的产生。带有皮肤的结构使货物运输的控制成为一种新颖的配置。作为演示,亲水性分子负载在水凝胶中,该水分子通过核心和皮肤释放,从而能够调节扩散和渗透现象。这种3D打印功能材料由于具有层次结构,因此可以独立控制强度。以自然界中普遍存在的皮肤和角质层的功能为例,提出了一种新的制造方法,作为实现保护,调节和感觉的一种简单方法。

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