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首页> 外文期刊>Scientific reports. >Electrochemical immunosensor with Cu(I)/Cu(II)-chitosan-graphene nanocomposite-based signal amplification for the detection of newcastle disease virus
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Electrochemical immunosensor with Cu(I)/Cu(II)-chitosan-graphene nanocomposite-based signal amplification for the detection of newcastle disease virus

机译:用Cu(I)/ Cu(II)的电化学免疫传感器 - 基于Chitosan-石墨烯纳米复合材料的信号放大,用于检测新城疫病毒

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摘要

An electrochemical immunoassay for the ultrasensitive detection of Newcastle disease virus (NDV) was developed using graphene and chitosan-conjugated Cu(I)/Cu(II) (Cu(I)/Cu(II)-Chi-Gra) for signal amplification. Graphene (Gra) was used for both the conjugation of an anti-Newcastle disease virus monoclonal antibody (MAb/NDV) and the immobilization of anti-Newcastle disease virus polyclonal antibodies (PAb/NDV). Cu(I)/Cu(II) was selected as an electroactive probe, immobilized on a chitosan-graphene (Chi-Gra) hybrid material, and detected by differential pulse voltammetry (DPV) after a sandwich-type immune response. Because Gra had a large surface area, many antibodies were loaded onto the electrochemical immunosensor to effectively increase the electrical signal. Additionally, the introduction of Gra significantly increased the loading amount of electroactive probes (Cu(I)/Cu(II)), and the electrical signal was further amplified. Cu(I)/Cu(II) and Cu(I)/Cu(II)-Chi-Gra were compared in detail to characterize the signal amplification ability of this platform. The results showed that this immunosensor exhibited excellent analytical performance in the detection of NDV in the concentration range of 100.13 to 105.13 EID50/0.1?mL, and it had a detection limit of 100.68 EID50/0.1?mL, which was calculated based on a signal-to-noise (S/N) ratio of 3. The resulting immunosensor also exhibited high sensitivity, good reproducibility and acceptable stability.
机译:使用石墨烯和壳聚糖 - 缀合的Cu(I)/ Cu(II)(Cu(I)/ Cu(II)-CHI-Gra)使用石墨烯疾病病毒(NDV)的电化学免疫测定用于对新城疫病毒(NDV)进行信号放大的影响。石墨烯(GRA)用于抗新宫疾病病毒单克隆抗体(MAB / NDV)的共轭和抗新宫疾病病毒多克隆抗体(PAB / NDV)的固定化。选择Cu(I)/ Cu(II)作为电活性探针,固定在壳聚糖 - 石墨烯(CHI-GRA)杂化材料上,并在夹层型免疫应答后通过差分脉冲伏安法(DPV)检测。因为GRA具有大表面积,因此将许多抗体加载到电化学免疫传感器上,以有效地增加电信号。另外,GRA的引入显着增加了电活性探针的负载量(Cu(I)/ Cu(II)),并且电信号进一步放大。详细比较Cu(I)/ Cu(II)和Cu(I)/ Cu(II)-CHI-Gra以表征该平台的信号放大能力。结果表明,该免疫传感器在100.13至105.13 eid50 / 0.1mL的浓度范围内的NDV检测出优异的分析性能,其检测限为100.68 Eid50 / 0.1?ml,其基于信号计算-to噪声(S / N)比例为3.所得免疫传感器也表现出高灵敏度,良好的再现性和可接受的稳定性。

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