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通过微物体的自组织制备定制化组合微区室:组装、表征和细胞研究。

Tailored Combinatorial Microcompartments through the Self-Organization of Microobjects: Assembly, Characterization, and Cell Studies.

机构信息

Physical Chemistry I and Research Center of Micro and Nano-chemistry and Engineering (Cμ), University of Siegen, Adolf-Reichwein-Straße 2, 57076, Siegen, Germany.

出版信息

Angew Chem Int Ed Engl. 2019 Apr 8;58(16):5246-5250. doi: 10.1002/anie.201814076. Epub 2019 Mar 18.

Abstract

A new concept enables the generation of cell microenvironments by microobject assembly at an water/air interface. As the orientation of 30 μm sized polymer cubes and their capillary force assembly are controlled by the surface wettability, which in turn can be modulated by coating the initially exposed surfaces with gold and self-assembled monolayers, unique niches in closely packed arrays of cubes with vertex up orientation can be realized. The random assembly of distinctly different cubes, prefunctionalized or surface-structured exclusively on their top surface, facilitates the parallel generation of different microenvironments in a combinatorial manner, which paves the way to future systematic structure-property relationship studies with cells.

摘要

一种新的概念通过在水/气界面处的微物体组装来产生细胞微环境。由于 30μm 大小的聚合物立方体的取向及其毛细力组装受到表面润湿性的控制,而表面润湿性又可以通过用金和自组装单层涂覆初始暴露的表面来调节,因此可以实现具有顶点朝上取向的紧密堆积立方体阵列中的独特龛位。通过明显不同的立方体的随机组装,这些立方体预先官能化或仅在其顶表面上进行表面结构化,可以方便地以组合方式并行生成不同的微环境,为未来与细胞的系统结构-性能关系研究铺平了道路。

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