Tolani Sagar B, Craig Michael, DeLong Robert K, Ghosh Kartik, Wanekaya Adam K
Department of Chemistry, Missouri State University, Springfield, MO 65897, USA.
Anal Bioanal Chem. 2009 Feb;393(4):1225-31. doi: 10.1007/s00216-008-2556-0. Epub 2008 Dec 25.
We report the electrochemical deposition of poly(pyrrolepropylic acid) nanowires, their covalent modification with antibodies and their conversion into potential functional sensor devices. The nanowires and the devices were characterised by optical microscopy, fluorescence microscopy, electron microscopy and electrical measurements. Fluorescence images, current-voltage (I-V) profiles and real-time sensing measurements demonstrated a rapid and highly sensitive and selective detection of human serum albumin (HSA), a substance that has been used to diagnose incipient renal disease. The detection is based on the selective binding of HSA onto anti-HSA that is covalently attached to the nanowires. The binding changes the electrical properties of the nanowires thus enabling the real-time detection. Whilst the utility of the research was demonstrated for protein binding/detection, the technology could easily be designed for the detection of other analytes by the modification of polymer nanowires with other analyte-specific molecules/biomolecules. Therefore, the technology has the potential to positively impact broad analytical applications in the biomedical, environmental and other sectors.
我们报道了聚(吡咯丙酸)纳米线的电化学沉积、它们与抗体的共价修饰以及它们转化为潜在功能传感器装置的过程。通过光学显微镜、荧光显微镜、电子显微镜和电学测量对纳米线和装置进行了表征。荧光图像、电流-电压(I-V)曲线和实时传感测量表明,该方法能够快速、高度灵敏且选择性地检测人血清白蛋白(HSA),HSA是一种用于诊断早期肾病的物质。该检测基于HSA与共价连接在纳米线上的抗HSA的选择性结合。这种结合改变了纳米线的电学性质,从而实现实时检测。虽然该研究的实用性在蛋白质结合/检测方面得到了证明,但通过用其他分析物特异性分子/生物分子修饰聚合物纳米线,该技术可以很容易地设计用于检测其他分析物。因此,该技术有可能对生物医学、环境和其他领域的广泛分析应用产生积极影响。