Shen Zhihong, Stryker Gabrielle A, Mernaugh Ray L, Yu Lei, Yan Heping, Zeng Xiangqun
Department of Chemistry, Oakland University, Rochester, MI 48309, USA.
Anal Chem. 2005 Feb 1;77(3):797-805. doi: 10.1021/ac048655w.
In this paper, we describe a novel nonlabeled biosensor with high diagnostic potential for rapid and sensitive detection of antigens in complex biological samples. The biosensor comprises a piezoimmunosensor (PZ) displaying a specially constructed recombinant antibody on its surface. The recombinant single-chain fragment variable (scFv) antibody contained a cysteine within the linker amino acid sequence used to join the scFv variable heavy and light chains. The presence of cysteine induced the scFv construct to self-assemble as a densely packed rigid monolayer on the gold surface of a quartz crystal microbalance. scFv molecules in this self-assembled monolayer (SAM) exhibited a defined orientation and high areal densities, with scFv-modified microbalance surfaces displaying 35 times as many variable antigen-binding sites per square centimeter as surfaces modified with whole antibody. Experimental data show that the scFv SAM PZ is superior to Fab fragment, Fab fragment containing a free sulfhydryl group (i.e., Fab-SH), and whole antibody PZs regarding sensitivity and specificity. Because of their small uniform size (MW approximately 27000) and the ease with which they can be modified using genetic engineering, scFv's have significant advantages over whole antibodies in microbalance biosensor systems. We demonstrate here that the use of scFv containing a cysteine within the scFv linker sequence (i.e., scFv-cys) for preparation of biosensor surfaces markedly increases the density of available antigen-binding sites, yielding a system that is highly selective, rapid, and capable of detecting low concentrations of antigens in complex samples.
在本文中,我们描述了一种新型的无标记生物传感器,它具有很高的诊断潜力,可用于快速、灵敏地检测复杂生物样品中的抗原。该生物传感器包括一个压电免疫传感器(PZ),其表面展示有特殊构建的重组抗体。重组单链可变片段(scFv)抗体在用于连接scFv重链和轻链可变区的接头氨基酸序列中含有一个半胱氨酸。半胱氨酸的存在促使scFv构建体在石英晶体微天平的金表面自组装成密集堆积的刚性单层。这种自组装单层(SAM)中的scFv分子呈现出确定的取向和高面密度,每平方厘米经scFv修饰的微天平表面展示的可变抗原结合位点数量是经完整抗体修饰表面的35倍。实验数据表明,在灵敏度和特异性方面,scFv SAM PZ优于Fab片段、含有游离巯基的Fab片段(即Fab-SH)以及完整抗体PZ。由于其大小均匀且分子量小(约27000),并且易于通过基因工程进行修饰,scFv在微天平生物传感器系统中比完整抗体具有显著优势。我们在此证明,使用在scFv接头序列中含有半胱氨酸的scFv(即scFv-cys)来制备生物传感器表面,可显著增加可用抗原结合位点的密度,从而产生一个高度选择性、快速且能够检测复杂样品中低浓度抗原的系统。