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Highly Sensitive Amperometric Immunosensor for Detection of Plasmodium falciparum Histidine-Rich Protein 2 in Serum of Humans with Malaria: Comparison with a Commercial Kit

机译:高灵敏度的安培免疫传感器,用于检测疟疾患者血清中的恶性疟原虫组氨酸-富含蛋白质2:与商业试剂盒的比较

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A disposable amperometric immunosensor was developed for the detection of Plasmodium falciparum histidine-rich protein 2 (PfHRP-2) in the sera of humans with P. falciparum malaria. For this purpose, disposable screen-printed electrodes (SPEs) were modified with multiwall carbon nanotubes (MWCNTs) and Au nanoparticles. The electrodes were characterized by cyclic voltammetry, scanning electron microscopy, and Raman spectroscopy. In order to study the immunosensing performances of modified electrodes, a rabbit anti-PfHRP-2 antibody (as the capturing antibody) was first immobilized on an electrode. Further, the electrode was exposed to a mouse anti-PfHRP-2 antibody from a serum sample (as the revealing antibody), followed by a rabbit anti-mouse immunoglobulin G-alkaline phosphatase conjugate. The immunosensing experiments were performed on bare SPEs, MWCNT-modified SPEs, and Au nanoparticle- and MWCNT-modified SPEs (Nano-Au/MWCNT/SPEs) for the amperometric detection of PfHRP-2 in a solution of 0.1 M diethanolamine buffer, pH 9.8, by applying a potential of 450 mV at the working electrode. Nano-Au/MWCNT/SPEs yielded the highest-level immunosensing performance among the electrodes, with a detection limit of 8 ng/ml. The analytical results of immunosensing experiments with human serum samples were compared with the results of a commercial Paracheck Pf test, as well as the results of microscopy. The specificities, sensitivities, and positive and negative predictive values of the Paracheck Pf and amperometric immunosensors were calculated by taking the microscopy results as the “gold standard.” The Paracheck Pf kit exhibited a sensitivity of 79% (detecting 34 of 43 positive samples; 95% confidence interval [CI], 75 to 86%) and a specificity of 81% (correctly identifying 57 of 70 negative samples; 95% CI, 76 to 92%), whereas the developed amperometric immunosensor showed a sensitivity of 96% (detecting 41 of 43 positive samples; 95% CI, 93 to 98%) and a specificity of 94% (correctly identifying 66 of 70 negative samples; 95% CI, 92 to 99%). The developed method is more sensitive and specific than the Paracheck Pf kit.
机译:开发了一种一次性安培免疫传感器,用于检测人 P血清中的恶性疟原虫组氨酸富集蛋白2(PfHRP-2)。恶性疟疾。为此,用多壁碳纳米管(MWCNT)和金纳米粒子对一次性丝网印刷电极(SPE)进行了改性。通过循环伏安法,扫描电子显微镜和拉曼光谱对电极进行表征。为了研究修饰电极的免疫传感性能,首先将兔抗PfHRP-2抗体(作为捕获抗体)固定在电极上。此外,将电极暴露于血清样品中的小鼠抗PfHRP-2抗体(作为显露抗体),然后暴露于兔抗小鼠免疫球蛋白G碱性磷酸酶偶联物。免疫传感实验在裸露的SPE,MWCNT修饰的SPE,Au纳米颗粒和MWCNT修饰的SPE(Nano-Au / MWCNT / SPE)上进行,用于在0.1 M二乙醇胺缓冲液(pH)中安培检测PfHRP-2。 9.8,在工作电极上施加450 mV的电势。纳米金/ MWCNT / SPEs在电极中产生了最高水平的免疫传感性能,检测极限为8 ng / ml。将人血清样品的免疫传感实验的分析结果与商业Paracheck Pf测试的结果以及显微镜检查的结果进行了比较。通过将显微镜检查结果作为“金标准”,计算出Paracheck Pf和安培免疫传感器的特异性,敏感性以及阳性和阴性预测值。 Paracheck Pf试剂盒的灵敏度为79%(检测43个阳性样品中的34个; 95%置信区间[CI]为75至86%),特异性为81%(正确鉴定70个阴性样品中的57个; 95%CI, 76%至92%),而开发的电流型免疫传感器显示出96%的灵敏度(检测43个阳性样品中的41个; 95%CI,93%至98%)和94%的特异性(正确识别70个阴性样品中的66个; 95 %CI,92%至99%)。所开发的方法比Paracheck Pf试剂盒更灵敏,更特异性。

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