Reck Michael, Stahl Frank, Walter Johanna Gabriela, Hollas Markus, Melzner Dieter, Scheper Thomas
Institut für Technische Chemie, Callinstr. 3, 30167 Hannover, Germany.
Biotechnol Prog. 2007 Nov-Dec;23(6):1498-505. doi: 10.1021/bp070179i. Epub 2007 Sep 26.
The highly specific and highly sensitive ELISA (enzyme linked immunosorbent assay) technique is the most commonly used method for immunological diagnostics in general. In combination with protein microarrays and their ability to allow performing thousands of experiments in parallel, a promising tool for global analytical approaches with reduced consumption of time, analytes, and reagents is given. In this study a protein microarray-based sandwich-ELISA for human interferon-gamma (hINF-gamma) is established. In consideration of the immense importance of the surface chemistry, a new black nitrocellulose matrix that generates very high signal-to-noise ratios (SNR) and a very low autofluorescence was tested and optimized as microarray substrate. A validation of the applicability of the system was performed with a comparison to different commercially available systems. Experimental results show that the microarray-based ELISA is faster and easier to perform and shows a lower limit of detection (LOD) than a comparable system in a 96-well plate. The spotted slides with the capture antibody can be stored up to 1 month with no significant loss of signal intensity. A second model system with immobilized His-tagged restriction enzyme EcoRV and an anti-His antibody shows in coincidence the good applicability of the black nitrocellulose membrane and no cross-reactivity toward the ELISA.
高度特异且高度灵敏的酶联免疫吸附测定(ELISA)技术通常是免疫诊断中最常用的方法。结合蛋白质微阵列及其能够并行进行数千次实验的能力,便产生了一种有望用于全局分析方法的工具,该方法可减少时间、分析物和试剂的消耗。在本研究中,建立了一种基于蛋白质微阵列的人γ干扰素(hINF-γ)夹心ELISA。考虑到表面化学的巨大重要性,测试并优化了一种新型黑色硝化纤维素基质,该基质具有非常高的信噪比(SNR)和非常低的自发荧光,用作微阵列底物。通过与不同的市售系统进行比较,对该系统的适用性进行了验证。实验结果表明,基于微阵列的ELISA操作更快、更简便,并且与96孔板中的可比系统相比,检测限更低。带有捕获抗体的点样载玻片可保存长达1个月,信号强度无明显损失。第二个模型系统采用固定化的带有His标签的限制性内切酶EcoRV和抗His抗体,结果一致表明黑色硝化纤维素膜具有良好的适用性,且对ELISA无交叉反应。