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Indirect Microcontact Printing to Create Functional Patterns of Physisorbed Antibodies

机译:间接微接触印刷以创造出物体吸收抗体的功能模式

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摘要

Microcontact printing (µCP) is a practical and versatile approach to create nanostructured patterns of biomolecular probes, but it involves conformational changes on the patterned bioreceptors that often lead to a loss on the biological activity of the resulting structures. Herein we introduce indirect µCP to create functional patterns of bioreceptors on solid substrates. This is a simple strategy that relies on physisorbing biomolecular probes of interest in the nanostructured gaps that result after patterning backfilling agents by standard µCP. This study presents the approach, assesses bovine serum albumin as backfilling agent for indirect µCP on different materials, reports the limitations of standard µCP on the functionality of patterned antibodies, and demonstrates the capabilities of indirect µCP to solve this issue. Bioreceptors were herein structured as diffractive gratings and used to measure biorecognition events in label-free conditions. Besides, as a preliminary approach towards sensing biomarkers, this work also reports the implementation of indirect µCP in an immunoassay to detect human immunoglobulin E.
机译:微接触印刷(μCP)是一种实用且多功能的方法,用于产生生物分子探针的纳米结构图案,但它涉及图案化生物受体的构象变化,这些生物受体通常导致所得结构的生物活性损失。在此,我们介绍间接μCP,以在固体基材上产生生物的功能模式。这是一种简单的策略,依赖于在通过标准μCP进行图案化回填剂后产生纳米结构间隙的生物分子探针。本研究提出了该方法,评估牛血清白蛋白作为间接μCP在不同材料上的回填剂,报告标准μCP对图案化抗体的功能的限制,并证明了间接μCP解决了该问题的能力。生物受体在此构成为衍射光栅,并用于测量无标记条件下的生物识别事件。此外,作为感测生物标志物的初步方法,该工作还报告了在免疫测定中的间接μCP的实施以检测人免疫球蛋白E.

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