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基于水凝胶的 QCM 适体传感器用于检测禽流感病毒。

Hydrogel based QCM aptasensor for detection of avian influenza virus.

机构信息

Department of Biological and Agricultural Engineering, University of Arkansas, Fayetteville, AR 72701, USA.

出版信息

Biosens Bioelectron. 2013 Apr 15;42:148-55. doi: 10.1016/j.bios.2012.10.038. Epub 2012 Oct 22.

Abstract

The objective of this study was to develop a quartz crystal microbalance (QCM) aptasensor based on ssDNA crosslinked polymeric hydrogel for rapid, sensitive and specific detection of avian influenza virus (AIV) H5N1. A selected aptamer with high affinity and specificity against AIV H5N1 surface protein was used, and hybridization between the aptamer and ssDNA formed the crosslinker in the polymer hydrogel. The aptamer hydrogel was immobilized on the gold surface of QCM sensor using a self-assembled monolayer method. The hydrogel remained in the state of shrink if no H5N1 virus was present in the sample because of the crosslinking between the aptamer and ssDNA in the polymer network. When it exposed to target virus, the binding reaction between the aptamer and H5N1 virus caused the dissolution of the linkage between the aptamer and ssDNA, resulting in the abrupt swelling of the hydrogel. The swollen hydrogel was monitored by the QCM sensor in terms of decreased frequency. Three polymeric hydrogels with different ratio (100:1 hydrogel I, 10:1 hydrogel II, 1:1 hydrogel III) of acrylamide and the aptamer monomer were synthesized, respectively, and then were used as the QCM sensor coating material. The results showed that the developed hydrogel QCM aptasensor was capable of detecting target H5N1 virus, and among the three developed aptamer hydrogels, hydrogel III coated QCM aptasensor achieved the highest sensitivity with the detection limit of 0.0128 HAU (HA unit). The total detection time from sampling to detection was only 30 min. In comparison with the anti-H5 antibody coated QCM immunosensor, the hydrogel QCM aptasensor lowered the detection limit and reduced the detection time.

摘要

本研究旨在开发基于 ssDNA 交联聚合物水凝胶的石英晶体微天平 (QCM) 适体传感器,用于快速、灵敏和特异性检测禽流感病毒 (AIV) H5N1。使用针对 AIV H5N1 表面蛋白具有高亲和力和特异性的选定适体,适体与 ssDNA 之间的杂交在聚合物水凝胶中形成交联剂。适体水凝胶通过自组装单层方法固定在 QCM 传感器的金表面上。如果样品中没有 H5N1 病毒,则由于聚合物网络中适体与 ssDNA 之间的交联,水凝胶保持收缩状态。当它暴露于靶病毒时,适体与 H5N1 病毒之间的结合反应导致适体与 ssDNA 之间的键合溶解,导致水凝胶的突然溶胀。通过 QCM 传感器以频率降低的方式监测溶胀的水凝胶。分别合成了三种具有不同丙烯酰胺与适体单体比例(100:1 水凝胶 I、10:1 水凝胶 II、1:1 水凝胶 III)的聚合物水凝胶,并将其用作 QCM 传感器涂层材料。结果表明,所开发的水凝胶 QCM 适体传感器能够检测目标 H5N1 病毒,在三种开发的适体水凝胶中,水凝胶 III 涂覆的 QCM 适体传感器具有最高的灵敏度,检测限为 0.0128 HAU(HA 单位)。从采样到检测的总检测时间仅为 30 分钟。与涂覆有抗 H5 抗体的 QCM 免疫传感器相比,水凝胶 QCM 适体传感器降低了检测限并缩短了检测时间。

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