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基于润湿性对比的平台制备具有准二维形状的定制微球。

Fabrication of Quasi-2D Shape-Tailored Microparticles using Wettability Contrast-Based Platforms.

机构信息

Department of Chemistry, CICECO - Aveiro Institute of Materials, University of Aveiro, Campus Universitário de Santiago, Aveiro, 3810-193, Portugal.

Institute of Biomaterials, Department of Materials Science and Engineering, University of Erlangen-Nuremberg, Erlangen, 91058, Germany.

出版信息

Adv Mater. 2021 Apr;33(14):e2007695. doi: 10.1002/adma.202007695. Epub 2021 Feb 28.

Abstract

The ability to fabricate materials with ultrathin architectures enables the breakthrough of low-dimensional structures with high surface area that showcase distinctive properties from their bulk counterparts. They are exploited in a wide range of fields, including energy harvesting, catalysis, and biomedicine. Despite such versatility, the fine tuning of the lateral dimensions and geometry of these structures remains challenging. Prepatterned platforms gain significant attention as enabling technologies to process materials with highly controlled shapes and dimensions. Herein, different nanometer-thick particles of various lateral sizes and geometries (e.g., squares, circles, triangles, hexagons) are processed with high precision and definition, taking advantage of the wettability contrast of oleophilic-oleophobic patterned surfaces. Quasi-2D polymeric microparticles with high shape- and size-fidelity can be retrieved as freestanding objects in a single step. These structures show cell-mediated pliability, and their integration in gravity-enforced human adipose-derived stem cell spheroids leads to an enhanced metabolic activity and a modulated secretion of proangiogenic factors.

摘要

具有超薄结构制造能力的材料使具有高表面积的低维结构成为可能,这些结构展示出与体相材料不同的独特性质。它们被广泛应用于能源收集、催化和生物医学等领域。尽管具有如此多的多功能性,但精细调整这些结构的横向尺寸和几何形状仍然具有挑战性。作为一种具有重要意义的使能技术,预先设计的平台可用于处理具有高度可控形状和尺寸的材料。在这里,可以利用亲油-疏油图案化表面的润湿性对比,以高精度和高清晰度处理各种横向尺寸和几何形状(例如,正方形、圆形、三角形、六边形)的不同纳米厚颗粒。可以作为独立物体一步获得具有高形状和尺寸保真度的准 2D 聚合物微球。这些结构表现出细胞介导的柔韧性,并且它们在重力作用下的人脂肪源性干细胞球体中的集成导致代谢活性增强和促血管生成因子的分泌调节。

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