Wacker Ron, Schröder Hendrik, Niemeyer Christof M
Chimera Biotec GmbH, Emil-Figge Strasse 76A, D-44227 Dortmund, Germany.
Anal Biochem. 2004 Jul 15;330(2):281-7. doi: 10.1016/j.ab.2004.03.017.
Antibody microarrays have the potential to revolutionize protein diagnostics. The major problems in the fabrication of antibody arrays, however, concern the reproducibility and homogeneity of the attachment of the proteins on the solid substrate. We here compare the DNA-directed immobilization (DDI) method with two conventional strategies for immobilization of antibodies on glass substrates. DDI is based on the self-assembly of semisynthetic DNA-streptavidin conjugates which converts an array of DNA oligomers into an antibody microarray. DDI was compared with direct spotting of antibodies on chemically activated glass slides and with immobilization of biotinylated antibodies on streptavidin-coated slides. The immobilized antibodies were used as capture reagents in a two-sided (sandwich) immunoassay for the quantification of rabbit IgG as a model antigen. Detection limits down to 0.001nM (150 pg/mL) were attained with all three array formats; however, DDI and direct spotting of the antibodies led to the highest fluorescence intensities. DDI led to the best spot homogeneity and intra- and interexperimental reproducibility. Moreover, DDI allowed highly economical use of antibody materials; that is, at least 100-fold less antibody is needed for preparing an array by DDI instead of by direct spotting. Taking into account the greater versatility and convenience of handling of the self-assembly approach, this study demonstrates that DDI is an advantageous alternative for generating versatile and robust protein arrays.
抗体微阵列有潜力彻底改变蛋白质诊断技术。然而,抗体阵列制备中的主要问题涉及蛋白质在固体基质上附着的可重复性和均匀性。我们在此将DNA定向固定化(DDI)方法与两种将抗体固定在玻璃基质上的传统策略进行比较。DDI基于半合成DNA-链霉亲和素共轭物的自组装,它将DNA寡聚物阵列转化为抗体微阵列。将DDI与抗体直接点样于化学活化载玻片以及生物素化抗体固定于链霉亲和素包被载玻片的方法进行比较。固定化抗体用作双面(夹心)免疫分析中的捕获试剂,用于定量兔IgG作为模型抗原。三种阵列形式均达到了低至0.001nM(150 pg/mL)的检测限;然而,DDI和抗体直接点样产生的荧光强度最高。DDI产生的斑点均匀性最佳,实验内和实验间的可重复性也最佳。此外,DDI可高度经济地使用抗体材料;也就是说,通过DDI制备阵列所需的抗体比直接点样至少少100倍。考虑到自组装方法具有更大的通用性和操作便利性,本研究表明DDI是生成通用且稳健的蛋白质阵列的一种有利替代方法。