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Gold Nanoparticle-Enhanced Secondary Ion Mass Spectrometry Imaging of Peptides on Self-Assembled Monolayers

机译:自组装单分子膜上肽的金纳米颗粒增强型二次离子质谱成像

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We demonstrate the use of gold nanoparticles (AuNPs) to enhance the secondary ion emission of peptides in time-of-flight secondary ion mass spectrometry (TOF-SIMS). The signal intensity of peptides adsorbed onto AuNPs was significantly increased when compared to that of self-assembled monolayers (SAMs). This gold nanoparticle-enhanced SIMS, termed NE-SIMS, enabled the sensitive detection of subtle modifications of peptides, such as phosphorylation. From a quantitative analysis of the amounts of adsorbed peptides and AuNPs on SAMs using quartz crystal microbalance and surface plasmon resonance spectroscopy, the ratio of peptide molecule to AuNP on amine-SAMs was revealed to be 18-19:1. When considering the ratio of peptide to matrix (1:10~(3)-10~(6)) employed in a matrix-enhanced SIMS, the use of AuNPs gave rise to a significantly increased secondary ion emission of peptides. Peptides were adsorbed onto patterned AuNPs on SAMs using a microfluidic system, and well-contrasted molecular ion images were obtained. NE-SIMS is expected to be applied to a chip-based analysis of modification of biomolecules in a label-free manner.
机译:我们演示了使用金纳米颗粒(AuNPs)来增强飞行时间二次离子质谱(TOF-SIMS)中肽的二次离子发射。与自组装单分子膜(SAMs)相比,吸附在AuNPs上的肽的信号强度显着增加。这种金纳米颗粒增强的SIMS(称为NE-SIMS)能够灵敏地检测肽的细微修饰,例如磷酸化。通过使用石英晶体微天平和表面等离子体共振光谱对SAMs上吸附的肽和AuNP的数量进行定量分析,发现胺-SAMs上的肽分子与AuNP的比例为18-19:1。当考虑在基质增强型SIMS中使用的肽与基质的比例(1:10〜(3)-10〜(6))时,使用AuNPs会显着增加肽的二次离子发射。使用微流控系统将肽吸附到SAM上的图案化AuNP上,并获得对比度良好的分子离子图像。 NE-SIMS有望以无标记的方式应用于基于芯片的生物分子修饰分析。

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