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首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >A self-calibrating electrochemical aptasensing platform: Correcting external interference errors for the reliable and stable detection of avian influenza viruses
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A self-calibrating electrochemical aptasensing platform: Correcting external interference errors for the reliable and stable detection of avian influenza viruses

机译:一种自校准电化学Aptasensing平台:校正外部干扰误差以获得可靠稳定地检测禽流感病毒

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摘要

Conventional electrochemical biosensing systems rely on a single output signal, which limits their certain practical application, specifically from the viewpoint of external interference factors causing electrochemical signal errors. This study reports a self-calibrating dual-electrode based electrochemical aptasensor for the reliable and independent detection of avian influenza viruses (ATVs), which are the primary cause of highly contagious respiratory diseases, under external interference factors. Both electrodes were fabricated using tungsten rods surface-modified with a 3D nanostructured porous silica film (3DNRE). Subsequently, methylene blue (MB) was loaded as a redox-active material into the pores and capped with corresponding aptamer. One electrode was capped with an anti-AIV nucleoprotein (NP) aptamer (Apt(AIV)-MB@3DNRE) allowing target-specific binding, resulting in changes in electrochemical signal upon diffusional release of the loaded redox molecules. The other electrode was capped with a control aptamer (Apt(con)-MB@3DNFRE), serving as a reference to correct false responses generated by nonspecific aptamer detachment and MB release under environmental changes in pH and ion strength and presence of nontarget molecules from cell lysis debris. In the dual-electrode platform, Apt(con)-MB@3DNFRE provides a corrected baseline for the fluctuating original output signals from Apt Apt(AIV)-MB@3DNRE. Consequently, this dual-electrode platform exhibits excellent output-signal stability (relative standard deviation, RSD: 5.86%) compared to a conventional single-electrode platform (RSD: 30.13%) at equivalent concentrations of AIV NP samples under different reaction buffer conditions. Moreover, no further purification and washing steps were required, indicating that the strategy may represent a universal and reliable platform for the electrochemical aptamer-based detection of various biomolecules.
机译:传统的电化学生物传感系统依赖于单个输出信号,其限制了它们的某些实际应用,具体从外部干扰因子的观点出发,导致电化学信号误差。本研究报告了一种自校准的双电极基电化学Aptasensor,用于可靠和独立地检测禽流感病毒(ATV),这是外部干扰因子的高度传染性呼吸道疾病的主要原因。使用用3D纳米结构多孔二氧化硅膜(3DNRE)表面改性的钨棒制造两个电极。随后,将亚甲基蓝(MB)作为氧化还原活性物质装入孔中并用相应的适体盖。用抗AIV核蛋白(NP)适体(APT(AIV)-MB @ 3DNRE)用抗AIV核蛋白(NP)适体(APT(AIV)-MB @ 3DNRE)封装一个电极,从而导致电化学信号在加载的氧化还原分子的扩散释放时的变化。用对照适体(APT(CON)-MB @ 3DNFRE)封装另一个电极,用作校正由非特异性适体脱离和根据环境变化的非特异性适体脱离和MB释放产生的校正假响应的参考细胞裂解碎片。在双电极平台中,APT(CON)-MB @ 3DNFRE为来自APT(AIV)-MB @ 3DNRE的波动原始输出信号提供校正的基线。因此,与在不同反应缓冲条件下的等效浓度AIV NP样品的传统单电极平台(RSD:30.13%)相比,该双电极平台具有优异的输出信号稳定性(相对标准偏差,RSD:5.86%)。此外,不需要进一步纯化和洗涤步骤,表明该策略可以代表用于各种生物分子的电化学适体的检测的通用和可靠的平台。

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