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Highly Stable SERS pH Nanoprobes Produced by Co-Solvent Controlled AuNP Aggregation

机译:通过助溶剂控制的AuNP聚集产生的高度稳定的SERS pH纳米探针

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摘要

Production of gold nanoparticle (AuNP) surface-enhanced Raman spectroscopy (SERS) nanoprobes requires replicable aggregation to produce multimers with high signal intensity. Herein, we illustrate a novel, yet simple, approach to produce SERS nanoprobes through control of co-solvent composition. AuNP multimers were produced by mixing AuNP monomers in water:ethanol co-solvent for variable periods of time. By varying the water:ethanol ratio and the amount of 4-mercaptobenzoic acid (4-MBA) present, the aggregation rate can be systematically controlled. Thiolated poly(ethylene glycol) was then added to halt the aggregation process and provide steric stability. This approach was used to produce pH nanoprobes with excellent colloidal stability in high ionic strength environments and in complex samples. The pH probe exhibits broad pH sensitivity over the range 6-11 and we calculate that a single AuNP dimer in a 35 fL volume is sufficient to generate a detectable SERS signal. As a proof-of-concept, the probes were used to detect the intracellular pH of human prostate cancer cells (PC-3). The internalized probes exhibit a strong 4-MBA signal without any interfering bands from either the cells or the culture media and produce exceptionally detailed pH maps. pH maps obtained from 19 xy surface scans and 14 yz depth scans exhibit highly consistent intracellular pH in the range of 5 to 7, thus indicating the greater reliability and reproducibility of our pH probes compared with other probes previously reported in the literature. Our water:ethanol co-solvent production process is fast, simple, and efficient. Adjustment of solvent composition may become a powerful way to produce SERS tags or nanoprobes in the future.
机译:金纳米粒子(AuNP)表面增强拉曼光谱(SERS)纳米探针的生产需要可复制的聚集以产生具有高信号强度的多聚体。在本文中,我们举例说明了通过控制助溶剂组成来生产SERS纳米探针的新颖但简单的方法。通过将AuNP单体在水:乙醇共溶剂中混合不同的时间段来生产AuNP多聚体。通过改变水:乙醇的比例和4-巯基苯甲酸(4-MBA)的含量,可以系统地控制聚集速率。然后添加硫醇化的聚乙二醇以停止聚集过程并提供空间稳定性。该方法用于生产在高离子强度环境和复杂样品中具有出色胶体稳定性的pH纳米探针。 pH探针在6-11范围内显示出广泛的pH敏感性,我们计算出35 fL体积的单个AuNP二聚体足以产生可检测的SERS信号。作为概念验证,这些探针用于检测人前列腺癌细胞(PC-3)的细胞内pH。内在化的探针显示出很强的4-MBA信号,而没有来自细胞或培养基的任何干扰带,并能产生异常详细的pH值图。从19 xy表面扫描和14 yz深度扫描获得的pH值图在5至7的范围内显示出高度一致的细胞内pH值,这表明我们的pH探针与先前文献中报道的其他探针相比具有更高的可靠性和可重复性。我们的水:乙醇共溶剂生产过程快速,简单,高效。调整溶剂组成可能会成为将来生产SERS标签或纳米探针的有力方法。

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