首页> 外文期刊>Journal of nanoparticle research: An interdisciplinary forum for nanoscale science and technology >Detection of alpha-fetoprotein in magnetic immunoassay of thin channels using biofunctional nanoparticles
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Detection of alpha-fetoprotein in magnetic immunoassay of thin channels using biofunctional nanoparticles

机译:使用生物功能纳米粒子在薄通道磁免疫测定中检测甲胎蛋白

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This paper presents the use of fluorescent biofunctional nanoparticles (10–30 nm) to detect alpha-fetoprotein (AFP) in a thin-channel magnetic immunoassay. We used an AFP model biomarker and s-shaped deposition zones to test the proposed detection method. The results show that the detection using fluorescent biofunctional nanoparticle has a higher throughput than that of functional microparticle used in previous experiments on affinity reactions. The proposed method takes about 3 min (versus 150 min of previous method) to detect 100 samples. The proposed method is useful for screening biomarkers in clinical applications, and can reduce the run time for sandwich immunoassays to less than 20 min. The detection limits (0.06 pg/ml) and linear ranges (0.068 pg/ml–0.68 ng/ml) of AFP using fluorescent biofunctional nanoparticles are the same as those of using functional microparticles within experimental errors. This detection limit is substantially lower and the linear range is considerably wider than those of enzyme-linked immunosorbent assay (ELISA) and other methods in sandwich immunoassay methods. The differences between this method and an ELISA in AFP measurements of serum samples were less than 12 %. The proposed method provides simple, fast, and sensitive detection with a high throughput for biomarkers.
机译:本文介绍了使用荧光生物功能纳米粒子(10–30 nm)在薄通道磁免疫测定中检测甲胎蛋白(AFP)的方法。我们使用AFP模型生物标志物和S形沉积区来测试所提出的检测方法。结果表明,使用荧光生物功能纳米粒子进行检测的通量要高于先前在亲和反应实验中使用的功能微粒。提出的方法大约需要3分钟(之前的方法是150分钟)来检测100个样品。所提出的方法可用于筛选临床应用中的生物标志物,并可将夹心免疫分析的运行时间缩短至少于20分钟。使用荧光生物功能纳米粒子的AFP的检出限(0.06 pg / ml)和线性范围(0.068 pg / ml–0.68 ng / ml)与在实验误差内使用功能微粒的检出限相同。与酶联免疫吸附测定(ELISA)和夹心免疫测定法中的其他方法相比,该检测限明显较低,线性范围也较宽。该方法与ELISA在血清样品的AFP测量中的差异小于12%。所提出的方法为生物标志物提供了高通量的简单,快速和灵敏的检测。

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