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首页> 外文期刊>Analytical chemistry >Three-Dimensional Plasmonic Trap Array for Ultrasensitive Surface-Enhanced Raman Scattering Analysis of Single Cells
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Three-Dimensional Plasmonic Trap Array for Ultrasensitive Surface-Enhanced Raman Scattering Analysis of Single Cells

机译:用于超敏感性表面增强拉曼散射分析的三维等压陷阱阵列

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摘要

Single-cell analysis provides an important strategy to evaluate cellular heterogeneity. Although surface-enhanced Raman scattering (SERS) has been considered as a promising label-free technique for single-cell, analysis, it remains at the early stage for characterizing the extracellular metabolites of single cells. Herein, we developed a convenient, flexible, and straightforward three-dimensional (3D) plasmonic trap array for simultaneously compartmentalizing and sensitively detecting single-cell metabolites. The 3D trap was spontaneously self-formed by an interfacial-energy-driven process when a liquid droplet was covered with an immiscible oil liquid (polydimethylsiloxane, PDMS). When a droplet of pure AgNO3 solution was immersed into PDMS, Ag+ ions were automatically reduced by the residual Si-H groups in PDMS. Snowflake-like nanoparticles of Ag could be formed Flunreaccm image on the inner surface of the 3D traps by tuning the concentration of Ag salt precursors and then assembled to flower-like microstructures, endowing the traps with remarkable plasmon enhancement. The established 3D traps exhibited considerably enhanced surface plasmon resonance signals for Raman reporting, and a low detection limit at the aM level was achieved for p-aminothiophenol. Moreover, these 3D traps can serve as an efficient tool for single-cell SERS measurement. As a proof-of-concept, dipicolinic acid, a common biomarker of bacterial spores, was successfully detected from a single cell. The presented approach provides a versatile tool for label-free and sensitive detection of single-cell environments.
机译:单细胞分析提供了评估细胞异质性的重要策略。虽然表面增强的拉曼散射(SERS)被认为是用于单细胞的有前途的无标签技术,但它仍保留在表征单细胞细胞外代谢物的早期阶段。在此,我们开发了一种方便,柔性,直接的三维(3D)等离子体捕集阵列,用于同时划分和敏感地检测单细胞代谢物。当用不混溶的油液(聚二甲基硅氧烷,PDMS)覆盖液滴时,通过界面 - 能量驱动的工艺自发地自成自动形成。当将纯AgNO 3溶液浸渍到PDMS中时,通过PDMS中的残余Si-H基团自动减少Ag +离子。通过调节Ag盐前体的浓度然后组装成花状微结构的浓度,可以在3D捕集器的内表面上形成雪花样纳米颗粒,然后将陷阱具有显着的等离子体增强的陷阱。所建立的3D陷阱表现出用于拉曼报告的显着增强的表面等离子体共振信号,对氨基噻吩酚达到了AM水平的低检测限。此外,这些3D陷阱可以用作单细胞SERS测量的有效工具。作为概念验证,从单个细胞成功地检测到概念上,己酰胺酸,细菌孢子的常见生物标志物。该方法提供了一种多功能工具,用于无标记和敏感的单细胞环境。

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