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Surface Coverage and Structure of Mixed DNA/Alkylthiol Monolayers on Gold: Characterization by XPS NEXAFS and Fluorescence Intensity Measurements

机译:金上的混合DNA /烷基硫醇单层的表面覆盖和结构:通过XPSNEXAFS和荧光强度测量进行表征

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摘要

Self-assembly of thiol-terminated single-stranded DNA (HS-ssDNA) on gold has served as an important model system for DNA immobilization at surfaces. Here, we report a detailed study of the surface composition and structure of mixed self-assembled DNA monolayers containing a short alkylthiol surface diluent [11-mercapto-1-undecanol (MCU)] on gold supports. These mixed DNA monolayers were studied with X-ray photoelectron spectroscopy (XPS), near-edge X-ray absorption fine structure spectroscopy (NEXAFS), and fluorescence intensity measurements. XPS results on sequentially adsorbed DNA/MCU monolayers on gold indicated that adsorbed MCU molecules first incorporate into the HS-ssDNA monolayer and, upon longer MCU exposures, displace adsorbed HS-ssDNA molecules from the surface. Thus, HS-ssDNA surface coverage steadily decreased with MCU exposure time. Polarization-dependent NEXAFS and fluorescence results both show changes in signals consistent with changes in DNA orientation after only 30 min of MCU exposure. NEXAFS polarization dependence (followed by monitoring the N 1s → π* transition) of the mixed DNA monolayers indicated that the DNA nucleotide base ring structures are oriented more parallel to the gold surface compared to DNA bases in pure HS-ssDNA monolayers. This indicates that HS-ssDNA oligomers reorient toward a more-upright position upon MCU incorporation. Fluorescence intensity results using end-labeled DNA probes on gold show little observable fluorescence on pure HS-ssDNA monolayers, likely due to substrate quenching effects between the fluorophore and the gold. MCU diluent incorporation into HS-ssDNA monolayers initially increases DNA fluorescence signal by densifying the chemisorbed monolayer, prompting an upright orientation of the DNA, and moving the terminal fluorophore away from the substrate. Immobilized DNA probe density and DNA target hybridization in these mixed DNA monolayers, as well as effects of MCU diluent on DNA hybridization in complex milieu (i.e., serum) were characterized by surface plasmon resonance (SPR) and 32P-radiometric assays and reported in a related study
机译:巯基封端的单链DNA(HS-ssDNA)在金上的自组装已成为将DNA固定在表面的重要模型系统。在这里,我们报告了在金载体上包含短烷基硫醇表面稀释剂[11-巯基-1-十一烷醇(MCU)]的混合自组装DNA单层的表面组成和结构的详细研究。使用X射线光电子能谱(XPS),近边缘X射线吸收精细结构光谱(NEXAFS)和荧光强度测量研究了这些混合的DNA单层。 XPS在金上依次吸附的DNA / MCU单层上的XPS结果表明,吸附的MCU分子首先并入HS-ssDNA单层,并且在更长的MCU暴露时间后,从表面置换吸附的HS-ssDNA分子。因此,HS-ssDNA的表面覆盖率随着MCU的暴露时间稳定下降。依赖极化的NEXAFS和荧光结果均显示,仅在MCU暴露30分钟后,信号变化与DNA方向变化一致。混合DNA单层的NEXAFS极化依赖性(随后监测N 1s→π*跃迁)表明,与纯HS-ssDNA单层中的DNA碱基相比,DNA核苷酸碱基环结构的取向更平行于金表面。这表明HS-ssDNA寡聚体在MCU掺入后重新定向到更直立的位置。使用末端标记的DNA探针在金上的荧光强度结果显示,在纯HS-ssDNA单层上几乎看不到荧光,这可能是由于荧光团和金之间的底物猝灭作用所致。将MCU稀释剂掺入HS-ssDNA单层中,首先通过使化学吸附的单层致密,促使DNA垂直定向,并使末端荧光团移离底物,从而增加DNA荧光信号。通过表面等离振子共振(SPR)和 32 表征了这些混合的DNA单层中固定化的DNA探针密度和DNA靶标杂交,以及MCU稀释剂对复杂环境(即血清)中DNA杂交的影响。 P射线测定法并在相关研究中报道

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