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651.
A sensitive sandwich type immunoassay has been proposed with the detection by inductively coupled plasma mass spectrometry (ICP-MS) in a single particle mode (time resolved analysis). The signal induced by the flash of ions (197Au+) due to the ionization of single Au-nanoparticle (Au-NP) label in the plasma torch can be measured by the mass spectrometer. The frequency of the transient signals is proportional to the concentration of Au-NPs labels. Characteristics of the signals obtained from Au-NPs of 20, 45 and 80 nm in diameters were discussed. The analytical figures for the determination of Au-labeled IgG using ICP-MS in conventional integral mode and single particle mode were compared in detail. Rabbit-anti-human IgG was used as a model analyte in the sandwich immunoassay. A detection limit (3σ) of 0.1 ng mL−1 was obtained for rabbit-anti-human IgG after immunoreactions, with a linear range of 0.3-10 ng mL−1 and a RSD of 8.1% (2.0 ng mL−1). Finally, the proposed method was successfully applied to spiked rabbit-anti-human IgG samples and rabbit-anti-human serum samples. The method resulted to be a highly sensitive ICP-MS based sandwich type immunoassay. 相似文献
652.
A novel gold-label silver-stain electrochemical immunosensor based on polythionine-gold nanoparticles (PTh-Au NPs) modified glassy carbon electrode (GCE) as a platform and secondary antibody labeled Au NPs (Ab2-Au NPs) as immumoprobe for carcinoembryonic antigen (CEA) detection. The sandwich-type biosensor adopted anodic stripping voltammetry to detect silver stripping signal when the Ab2-Au NPs of the formed immunocomplexes were stained with silver. 相似文献
653.
Yuhui Chen Hang Ao Wencheng Xiao Prof. Huangxian Ju Prof. Jie Wu 《Chemistry (Weinheim an der Bergstrasse, Germany)》2022,28(67):e202201425
Simple but robust testing assays are essential for screening and diagnosis of individuals infected with severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) in COVID-19 pandemic. Here, we described a chemiluminescent imaging assay (CLIA) for sensitive and convenient detection of SARS-CoV-2 nucleocapsid protein (NP) by a target-induced enzyme activity regulation (T-EAR) strategy. The T-EAR used a pair of antibody-DNA probes to recognize SARS-CoV-2 NP and proximity-induce rolling circle amplification for mass-production of pyrophosphate to coordinate with Cu2+, which prevented the reduction of Cu2+ to Cu+ by sodium ascorbate as well as the Cu+-caused inactivation of horseradish peroxidase (HRP). The activity retention of HRP produced strong CL signal for the detection of SARS-CoV-2 NP by catalyzing the oxidation of luminol by H2O2. The T-EAR based CLIA showed a wide detection range from 1 pg/mL to 100 ng/mL (13 fM to 1.3 nM) with the requirement of only 0.75 μL of sample. This CLIA had advantages of good sensitivity, simple wash-free operation, acceptable accuracy, and high-throughput imaging detection, displaying potential applicability in screening assay of COVID-19 infection. 相似文献
654.
基于功能化N掺杂C3N4构建光电免疫传感器检测癌胚抗原 总被引:1,自引:0,他引:1
分别合成掺杂不同比例N的C3N4纳米材料,利用红外光谱、荧光光谱等技术筛选出光电性能最优的N掺杂C3N4,并通过透射电镜、红外光谱等进行表征。将其作为光电转换材料,在氧化铟锡(ITO)电极表面构建高性能的免疫传感器。通过抗原-抗体的高特异性结合,实现对肿瘤标志物癌胚抗原的高灵敏检测。光电流结果表明:电流响应随癌胚抗原浓度的增加而减小,并在1.0 pg/mL^10 ng/mL的范围内呈现良好线性相关性。将此方法应用于检测血清样品中的癌胚抗原浓度,检测结果与商业化的酶联免疫分析方法结果进行对比没有显著差异。 相似文献