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Constructing 3D heterogeneous hydrogels from electrically manipulated prepolymer droplets and crosslinked microgels

机译:由电操纵的预聚物液滴和交联的微凝胶构建3D异质水凝胶

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Formation of multifunctional, heterogeneous, and encoded hydrogel building blocks, or microgels, by crosslinking and assembly of microgels are two essential steps in establishing hierarchical, complicated, and three-dimensional (3D) hydrogel architectures that recapitulate natural and biological structures or originate new materials by design. However, for the variety of the hydrogel materials crosslinked differently and for the varied scales of microgels and architectures, the formation and assembly processes are usually performed separately, which increases the manufacturing complexity of designed hydrogel materials. We show the construction of hydrogel architectures through programmable formation and assembly on an electromicrofluidic platform, adopting two reciprocal electric manipulations (electrowetting and dielectrophoresis) to manipulate varied objects (i) in multiple phases, including prepolymer liquid droplets and crosslinked microgels, (ii) on a wide range of scales from micrometer functional particles or cells to millimeter-assembled hydrogel architectures, and (iii) with diverse properties, such as conductive and dielectric droplets that are photocrosslinkable, chemically crosslinkable, or thermally crosslinkable. Prepolymer droplets, particles, and dissolved molecules are electrically addressable to adjust the properties of the microgel building blocks in liquid phase that subsequently undergo crosslinking and assembly in a flexible sequence to accomplish heterogeneous and seamless hydrogel architectures. We expect the electromicrofluidic platform to become a general technique to obtain 3D complex architectures.
机译:通过交联和组装微凝胶形成多功能,异质和编码的水凝胶构件或微凝胶是建立分层,复杂和三维(3D)水凝胶架构的两个基本步骤,该架构概述了自然和生物结构或产生了新材料通过设计。然而,由于各种交联的水凝胶材料不同以及微凝胶和结构的规模不同,通常分别进行形成和组装过程,这增加了设计的水凝胶材料的制造复杂性。我们展示了通过在电微流体平台上以可编程的方式形成和组装来构建水凝胶体系结构的方法,该过程采用两个相互的电操纵(电润湿和介电泳)来操纵多个物体(i)处于多个阶段,包括预聚物液滴和交联的微凝胶,(ii)从微米级功能性颗粒或细胞到毫米级组装的水凝胶结构,范围广泛,并且(iii)具有多种特性,例如可光交联,化学可交联或可热交联的导电液滴和介电液滴。预聚物的液滴,颗粒和溶解的分子可通过电寻址以调整液相中微凝胶结构单元的性质,随后以灵活的顺序进行交联和组装,以完成非均质和无缝的水凝胶结构。我们希望电微流体平台将成为获得3D复杂体系结构的通用技术。

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