首页> 外文期刊>Nucleic Acids Research >Controlled loading of oligodeoxyribonucleotide monolayers onto unoxidized crystalline silicon; fluorescence-based determination of the surface coverage and of the hybridization efficiency; parallel imaging of the process by Atomic Force Microscopy
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Controlled loading of oligodeoxyribonucleotide monolayers onto unoxidized crystalline silicon; fluorescence-based determination of the surface coverage and of the hybridization efficiency; parallel imaging of the process by Atomic Force Microscopy

机译:寡脱氧核糖核苷酸单层的受控负载到未氧化的晶体硅上;基于荧光的表面覆盖率和杂交效率测定;原子力显微镜对过程进行并行成像

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摘要

Unoxidized crystalline silicon, characterized by high purity, high homogeneity, sturdiness and an atomically flat surface, offers many advantages for the construction of electronic miniaturized biosensor arrays upon attachment of biomolecules (DNA, proteins or small organic compounds). This allows to study the incidence of molecular interactions through the simultaneous analysis, within a single experiment, of a number of samples containing small quantities of potential targets, in the presence of thousands of variables. A simple, accurate and robust methodology was established and is here presented, for the assembling of DNA sensors on the unoxidized, crystalline Si(100) surface, by loading controlled amounts of a monolayer DNA-probe through a two-step procedure. At first a monolayer of a spacer molecule, such as 10-undecynoic acid, was deposited, under optimized conditions, via controlled cathodic electrografting, then a synthetic DNA-probe was anchored to it, through amidation in aqueous solution. The surface coverage of several DNA-probes and the control of their efficiency in recognizing a complementary target-DNA upon hybridization were evaluated by fluorescence measurements. The whole process was also monitored in parallel by Atomic Force Microscopy (AFM).
机译:以高纯度,高均质性,坚固性和原子平面为特征的未氧化晶体硅,在附着生物分子(DNA,蛋白质或小的有机化合物)时,为构建电子小型化生物传感器阵列提供了许多优势。这允许通过在单个实验中同时分析成千上万个变量中包含少量潜在目标的多个样品,来研究分子相互作用的发生率。建立了一种简单,准确和可靠的方法,并通过两步程序加载受控量的单层DNA探针,以在未氧化的结晶Si(100)表面上组装DNA传感器。首先,在最佳条件下,通过受控的阴极电接枝,沉积间隔分子(例如10-十一碳烯酸)的单分子层,然后通过在水溶液中进行酰胺化将合成的DNA探针固定在其上。通过荧光测量评估了几种DNA探针的表面覆盖以及在杂交时识别互补靶DNA的效率控制。整个过程还通过原子力显微镜(AFM)进行并行监控。

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