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Rapid bio-patterning method based on the fabrication of PEG microstructures and layer-by-layer polymeric thin film

机译:基于PEG微结构和逐层聚合物薄膜制备的快速生物图案化方法

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摘要

The patterning of biomolecules in well-defined microstructures is critical issue for the development of biosensors and biochips. However, the fabrication of microstructures with well-ordered and spatially discrete forms to provide the patterned surface for the immobilization of biomolecules is difficult because of the lack of distinct physical andrnchemical barriers separating patterns. This study present rapid biomolecule patterning using micromolding in capillaries (MIMIC), soft-lithographic fabrication of PEG microstructures for prevention of nonspecific binding as a biological barrier, and self assembled polymeric thin film for efficient immobilization of proteins or cells. For the proof of concept, protein (FITC-BSA), bacteria (E.coli BL21-pET23b-GFP) were used for biomolecules patterning on polyelectrolyte coated surface within PEG microstructures. The novel approach of MIMIC combined with LbL coating provides a general platform for patterning a broad range of materials because it can be easily applied to various substrates such as glass, silicon, silicon dioxide, and polymers.
机译:明确定义的微结构中生物分子的图案化对于生物传感器和生物芯片的开发至关重要。然而,由于缺乏分离图案的独特的物理和化学障碍,难以制造具有良好有序且空间上离散形式的微结构以提供用于固定生物分子的图案化表面。这项研究提出了使用毛细管微模(MIMIC)进行快速生物分子图案化,PEG微结构的软光刻加工以防止作为生物屏障的非特异性结合以及有效固定蛋白质或细胞的自组装聚合物薄膜。为了进行概念验证,蛋白质(FITC-BSA),细菌(大肠杆菌BL21-pET23b-GFP)被用于在PEG微结构内的聚电解质涂层表面上进行生物分子图案化。 MIMIC与LbL涂层相结合的新颖方法为广泛的材料构图提供了一个通用平台,因为它可以轻松地应用于各种基材,例如玻璃,硅,二氧化硅和聚合物。

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