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Strongyloidiasis Serological Analysis with Three Different Biological Probes and Their Electrochemical Responses in a Screen-Printed Gold Electrode

机译:丝网印刷金电极中具有三种不同的生物探针的血管血管血管学分析及其在丝网印刷金电极中的电化学响应

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摘要

(1) Background: The validation of biological antigens is the study’s utmost goal in biomedical applications. We evaluated three different probes with single and multiple epitopes through electrochemical detection of specific IgG in serum for human strongyloidiasis diagnosis. (2) Methods: Screen-printed gold electrodes were used and probes consisting of two single-epitope synthetic peptides (D3 and C10) with different sequences, and a multi-epitope antigen [detergent phase (DP)—hydrophobic membrane proteins]. Human serum samples from three populations were used: Strongyloides stercoralis positive, positive for other parasitic infections and negative controls. To test the immobilization of probes onto a screen-printed gold electrode and the serum IgG detection, electrochemical analyses were carried out through differential pulse voltammetry (DPV) and the electrode surface analyses were recorded using atomic force microscopy. (3) Results: The electrochemical response in screen-printed gold electrodes of peptides D3 and C10 when using positive serum was significantly higher than that when using the DP. Our sensor improved sensitivity to detect strongyloidiasis. (4) Conclusions: Probes’ sequences are critical factors for differential electrochemical responses, and the D3 peptide presented the best electrochemical performance for strongyloidiasis detection, and may efficiently substitute whole antigen extracts from parasites for strongyloidiasis diagnosis in electrochemical immunosensors.
机译:(1)背景:生物抗原的验证是研究生物医学应用的最大目标。通过在血清血清中的特定IgG进行单一和多个表位评估三种不同探针,用于人抗血清诊断。 (2)方法:使用丝网印刷的金电极和由具有不同序列的两个单表位合成肽(D3和C10)组成的探针,以及多表位抗原[洗涤剂相(DP) - 羟基膜蛋白]。使用来自三种种群的人血清样品:抗酮氏菌阳性,阳性,用于其他寄生感染和阴性对照。为了将探针固定到丝网印刷的金电极和血清IgG检测上,通过差分脉冲伏安法(DPV)进行电化学分析,并使用原子力显微镜记录电极表面分析。 (3)结果:使用阳性血清的肽D3和C10的丝网印刷金电极中的电化学响应显着高于使用DP时的电化学响应。我们的传感器改善了检测抗弓形虫的敏感性。 (4)结论:探针的序列是鉴别电化学反应的关键因素,D3肽呈现出对抗施振肌瘤的最佳电化学性能,并且可以有效地将来自寄生虫的整个抗原提取物替代用于电化学免疫调菌剂中的抗弓形虫诊断。

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