Wacker Ron, Niemeyer Christof M
CHIMERA BIOTEC GmbH, Emil-Figge-Strasse 76 A, 44227 Dortmund, Germany.
Chembiochem. 2004 Apr 2;5(4):453-9. doi: 10.1002/cbic.200300788.
We describe a chip-based immunoassay for multiplex antigen detection, based on the self-assembly of semi-synthetic DNA-protein conjugates to generate an easily configurable protein microarray. The general principle of this microarray-fluorescence immunoassay (microFIA) is similar to that of a two-sided (sandwich) immunoassay. However, covalent single-stranded DNA-streptavidin conjugates are employed for the efficient immobilization of biotinylated capture antibodies through hybridization to complementary surface-bound DNA oligomers. In a model system, we use the DNA-directed immobilization (DDI) of antibodies to generate an antibody microarray for the parallel detection of the tumor marker human carcinoembryonic antigen (CEA), recombinant mistletoe lectin rViscumin (rVis), ceruloplasmin (CEP), and complement-1-inactivator (C1A) in human blood serum samples. Detection limits down to 400 pg mL(-1) are reached. In addition, we describe a method for the internal standardization of protein microarray analyses, based on the simultaneous measurement of constant amounts of the blood proteins CEP and C1 A, intrinsically present in human serum, to compensate for interexperimental variations usually occurring in microarray analyses. The standardization leads to a significantly higher data reliability and reproducibility in intra- and interassay measurements. We further demonstrate that the DDI-microFIA can also be carried out in a single step by tagging of the analyte simultaneously with both capture and detection antibody and subsequent immobilization of the immunocomplex formed, on the DNA microarray capture matrix. This protocol significantly reduces handling time and costs of analysis.
我们描述了一种基于芯片的多重抗原检测免疫分析方法,该方法基于半合成DNA-蛋白质共轭物的自组装来生成易于配置的蛋白质微阵列。这种微阵列荧光免疫分析(microFIA)的一般原理与双面(夹心)免疫分析相似。然而,共价单链DNA-链霉亲和素共轭物用于通过与互补的表面结合DNA寡聚物杂交来有效固定生物素化的捕获抗体。在一个模型系统中,我们使用抗体的DNA定向固定(DDI)来生成抗体微阵列,用于平行检测人血清样本中的肿瘤标志物癌胚抗原(CEA)、重组槲寄生凝集素rViscumin(rVis)、铜蓝蛋白(CEP)和补体1灭活剂(C1A)。检测限低至400 pg mL⁻¹。此外,我们描述了一种蛋白质微阵列分析的内部标准化方法,该方法基于同时测量人血清中固有存在的恒定含量的血液蛋白质CEP和C1A,以补偿微阵列分析中通常出现的实验间差异。这种标准化导致在批内和批间测量中数据可靠性和可重复性显著提高。我们进一步证明,DDI-microFIA也可以通过同时用捕获抗体和检测抗体标记分析物,然后将形成的免疫复合物固定在DNA微阵列捕获基质上,一步完成。该方案显著减少了处理时间和分析成本。