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Tuning Gold Nanoparticles Interfaces by Specific Peptide Interaction for Surface Enhanced Raman Spectroscopy (SERS) and Separation Applications

机译:通过特定的肽相互作用调节金纳米颗粒的界面,以用于表面增强拉曼光谱(SERS)和分离应用

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摘要

Surface functionalization and control over nanostructured interfaces represents a key aspect in nanoscience and nanobiotechnology. Nanoplasmonic structures for analyte detection typically require sophisticated nanofabrication techniques, as well as bioactivated nanostructures that need multistep conjugations for chemical ligation. An alternative to such complex processes is to rely on specific biomolecules adsorption for decoration or self-assembly of nanoparticles at solid/liquid interface. In principle, small biomolecules with specific binding properties to nanostructures could control the assembly without modifying the nanoparticle chemistry, pH of the solution or salt concentration. Importantly, such an approach could be direct, robust, and reversible. In this work, we report about the use of a specific peptide for direct and reversible adsorption on gold nanoparticles with tuned interracial properties just by simply adjusting the ratio between the numbers of peptide molecules to the number of gold nanoparticles. This easy, direct and reversible assembly of gold nanoparticles mediated by the specific peptide makes this platform ideal for small-volume samples and low concentrations detection using surface enhanced Raman Spectroscopy, as well as for the capture or separation of biomolecules in complex mix
机译:表面功能化和对纳米结构界面的控制代表了纳米科学和纳米生物技术的关键方面。用于分析物检测的纳米等离子体结构通常需要复杂的纳米加工技术,以及需要多步偶联才能进行化学连接的生物活化纳米结构。这种复杂过程的替代方法是依靠特定的生物分子吸附来在纳米颗粒的固/液界面处进行修饰或自组装。原则上,对纳米结构具有特定结合特性的小生物分子可以控制组装,而无需改变纳米颗粒的化学性质,溶液的pH值或盐浓度。重要的是,这种方法可以是直接的,可靠的和可逆的。在这项工作中,我们报告了仅通过调节肽分子数量与金纳米颗粒数量之间的比率,就可以将特定的肽用于具有可调节的异族特性的金纳米颗粒的直接和可逆吸附。由特定肽介导的金纳米颗粒的这种简单,直接和可逆的组装,使得该平台非常适合使用表面增强拉曼光谱法进行小批量样品和低浓度检测,以及捕获或分离复杂混合物中的生物分子。

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