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Impedimetric biosensor based on self-assembled hybrid cystein-gold nanoparticles and CramoLL lectin for bacterial lipopolysaccharide recognition

机译:基于自组装半胱氨酸-金纳米颗粒和CramoLL血凝素的阻抗生物传感器用于细菌脂多糖的识别

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摘要

We report the development of a new selective and specific electrochemical biosensor for bacterial lipolysaccharide (LPS). An electrode interface was constructed using a l-cysteine-gold nanoparticle (AuNpCys) composite to be immobilized by electrostatic interaction in the network of a poly(vinyl chloride-vinyl acetate maleic acid) (PVM) layer on a gold bare electrode. The impedimetric biosensor is fabricated by self-assembled CramoLL lectin on the PVM-AuNpCys-modified gold electrode through electrostatic interaction. CramoLL is used as the recognition interface. AFM images showed that LPS was specifically recognized on the PVM-AuNpCys-CramoLL system surface. The measurements of cyclic voltammetry (CV) and electrochemical impedance spectroscopy (EIS) showed that the electrochemical response of a redox probe system (K_4[Fe(CN)_6]~(4-)/K_3[Fe(CN)_6]~(3-)) were blocked, due to the procedures of modified electrode with PVM-AuNpCys-CramoLL. In the majority of the experiments the lectin retained its activity as observed through its interaction with LPS from Escherichia coli, Serratia marcescens, Salmonella enterica and Klebsiella pneumoniae. The results are expressed in terms of the charge transfer resistance and current peak anodic using the EIS and CV techniques for the development of a biosensor for contamination by endotoxins. A new type of sensor for selective discrimination of LPS types with a high sensitivity has been obtained.
机译:我们报告了一种新的选择性和特异性电化学生物传感器的细菌脂多糖(LPS)的发展。使用l-半胱氨酸-金纳米颗粒(AuNpCys)复合材料构建电极界面,该复合物通过静电作用固定在金裸电极上的聚(氯乙烯-乙酸乙烯酯乙酸马来酸)(PVM)层的网络中。阻抗式生物传感器是通过静电相互作用在PVM-AuNpCys修饰的金电极上自组装CramoLL凝集素而制成的。 CramoLL用作识别界面。 AFM图像显示LPS在PVM-AuNpCys-CramoLL系统表面上被特异性识别。循环伏安法(CV)和电化学阻抗谱(EIS)的测量表明,氧化还原探针系统(K_4 [Fe(CN)_6]〜(4-)/ K_3 [Fe(CN)_6]〜( 3-))由于使用PVM-AuNpCys-CramoLL修饰电极的程序而被封闭。在大多数实验中,凝集素通过与大肠杆菌,粘质沙雷氏菌,肠炎沙门氏菌和肺炎克雷伯菌的脂多糖相互作用而保持其活性。使用EIS和CV技术开发用于内毒素污染的生物传感器的电荷转移电阻和阳极电流峰值表示。已经获得了具有高灵敏度的用于选择性判别LPS类型的新型传感器。

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