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A Biomimetic Approach for the Creation of Two-Dimensional Microscale Surface Patterns: Creation of Isolated Immunological Synapses

机译:一种仿生方法用于创建二维微尺度表面图案:创建独立的免疫突触

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摘要

Current efforts in surface functionalization have not produced a robust technique capable of creating specific two-dimensional microscale geometrical arrays composed of multiple proteins. Such a capability is desirable for engineering substrates in sensing and cell patterning applications where at least two different protein functionalities in a specific configuration are required. Here we introduce a new approach for the creation of arrays of microscale geometries. We demonstrate our approach with a biomimetic structure inspired by the immunological synapse, a cell-cell interfacial structure characterized by two concentric rings of proteins: an outer adhesion protein structure and an inner recognition ligand core. The power of the technique lies in its ability to pattern any protein in any defined geometry as well as to create arrays in parallel.
机译:当前在表面功能化方面的努力尚未产生能够创建由多种蛋白质组成的特定的二维微尺度几何阵列的可靠技术。对于在传感和细胞构图应用中需要至少两种不同蛋白质功能的特定结构中的工程底物而言,这种功能是理想的。在这里,我们介绍了一种用于创建微型几何数组的新方法。我们通过仿生结构受到免疫突触的启发来证明我们的方法,仿生结构是一种以蛋白质的两个同心环为特征的细胞-细胞界面结构:外部粘附蛋白结构和内部识别配体核心。该技术的强大之处在于它能够以任何定义的几何图形对任何蛋白质进行图案化,以及并行创建阵列。

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