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用于无标记生物传感的微纤维上的生物布拉格光栅

BIO bragg gratings on microfibers for label-free biosensing.

作者信息

Juste-Dolz Augusto, Delgado-Pinar Martina, Avella-Oliver Miquel, Fernández Estrella, Pastor Daniel, Andrés Miguel V, Maquieira Ángel

机构信息

Instituto Interuniversitario de Investigación de Reconocimiento Molecular y Desarrollo Tecnológico (IDM), Universitat Politècnica de València, Universitat de València, 46022, Valencia, Spain.

Department of Applied Physics and Electromagnetism-ICMUV, Universitat de València, Burjassot, 46100, Spain.

出版信息

Biosens Bioelectron. 2021 Mar 15;176:112916. doi: 10.1016/j.bios.2020.112916. Epub 2021 Jan 2.

DOI:10.1016/j.bios.2020.112916
PMID:33401145
Abstract

Discovering nanoscale phenomena to sense biorecognition events introduces new perspectives to exploit nanoscience and nanotechnology for bioanalytical purposes. Here we present Bio Bragg Gratings (BBGs), a novel biosensing approach that consists of diffractive structures of protein bioreceptors patterned on the surface of optical waveguides, and tailored to transduce the magnitude of biorecognition assays into the intensity of single peaks in the reflection spectrum. This work addresses the design, fabrication, and optimization of this system by both theoretical and experimental studies to explore the fundamental physicochemical parameters involved. Functional biomolecular gratings are fabricated by microcontact printing on the surface of tapered optical microfibers, and their structural features were characterized. The transduction principle is experimentally demonstrated, and its quantitative bioanalytical prospects are assessed in a representative immunoassay, based on patterned protein probes and selective IgG targets, in label-free conditions. This biosensing system involves appealing perspectives to avoid unwanted signal contributions from non-specific binding, herein investigated in human serum samples. The work also proves how the optical response of the system can be easily tuned, and it provides insights into the relevance of this feature to conceive multiplexed BBG systems capable to perform multiple label-free biorecognition assays in a single device.

摘要

发现用于感知生物识别事件的纳米级现象为利用纳米科学和纳米技术实现生物分析目的引入了新的视角。在此,我们介绍生物布拉格光栅(BBG),这是一种新型生物传感方法,由在光波导表面图案化的蛋白质生物受体衍射结构组成,旨在将生物识别测定的幅度转换为反射光谱中单个峰的强度。这项工作通过理论和实验研究来解决该系统的设计、制造和优化问题,以探索其中涉及的基本物理化学参数。功能性生物分子光栅通过微接触印刷在锥形光学微纤维表面制备,并对其结构特征进行了表征。通过实验证明了转换原理,并在基于图案化蛋白质探针和选择性IgG靶标的代表性免疫测定中,在无标记条件下评估了其定量生物分析前景。这种生物传感系统有望避免非特异性结合产生的不必要信号干扰,本文在人血清样本中对此进行了研究。该工作还证明了系统的光学响应可以很容易地进行调节,并深入探讨了这一特性对于构思能够在单个设备中进行多种无标记生物识别测定的多路复用BBG系统的相关性。

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