用于禽流感病毒检测的磁性生物纳米球和纳米电极阻抗生物传感器

Ronghui Wang, Yanbin Li, X. Mao, T. Huang, Huaguang Lu
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引用次数: 8

摘要

基于生物纳米球分离/浓缩过程和交叉指状阵列纳米电极相结合的新型阻抗生物传感器,可灵敏、快速地检测禽流感病毒H5亚型。用H5亚型特异性单克隆抗体包被直径为30 nm的磁性纳米球,选择性捕获目标病毒。设计并制作了一种用于阻抗测量的双指阵列纳米电极。测量了抗体包被纳米颗粒-病毒复合物的阻抗变化,并将其与H5 AIV(例如H5N1)的存在相关联。基于纳米颗粒和纳米电极的阻抗生物传感器检测H5N1禽流感病毒的效价为0.0128 HA单位/50 μl。等效电路分析表明,由于目标病毒的存在,溶液电阻是导致阻抗变化的原因。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Magnetic bio-nanobeads and nanoelectrode based impedance biosensor for detection of avian influenza virus
A novel impedance biosensor was developed based on the combination of a bio-nanobead separation/concentration procedure and an interdigitated array nanoeletrode and was demonstrated for sensitive and rapid detection of H5 subtype of avian influenza virus (AIV). Magnetic nanobeads with a diameter of 30 nm were coated with H5 subtype-specific monoclonal antibodies to selectively capture the target virus. An interdigitated array nanoeletrode was designed and fabricated for impedance measurement. Changes in the impedance of the antibody coated nanobead-virus complex was measured and correlated to the presence of H5 AIV (e.g., H5N1). The nanobead and nanoeletrode based impedance biosensor was able to detect AIV H5N1 at titer of 0.0128 HA unit/50 μl. Equivalent circuit analysis indicated that the solution resistance was responsible for the impedance change due to the presence of target virus.
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