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首页> 外文期刊>Mikrochimica Acta: An International Journal for Physical and Chemical Methods of Analysis >Determination of 17-estradiol by surface-enhanced Raman spectroscopy merged with hybridization chain reaction amplification on Au@Ag core-shell nanoparticles
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Determination of 17-estradiol by surface-enhanced Raman spectroscopy merged with hybridization chain reaction amplification on Au@Ag core-shell nanoparticles

机译:用表面增强拉曼光谱法测定17-雌二醇与Au @ Ag核心 - 壳纳米粒子的杂交链反应扩增合并

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The authors describe an aptamer-based assay for 17-estradiol. It relies on the combined use of surface enhanced Raman scattering (SERS) and hybridization chain reaction (HCR). The aptamer against 17-estradiol is applied as the recognition probes, and this results in excellent specificity. Specific recognition of target 17-estradiol induce the freedom of DNA 2, which will open the stem-loop structure of probe 1 on the Au@Ag and form the partial dsDNA structure. With the nicking enzyme, the partial dsDNA will be hydrolyzed and the reside ssDNA on Au@Ag will form a small stem-loop structure. With the help of the other probe 2 modified Au@Ag and pre-immobilized probe 3 on the well of the microplate, an enzyme-free HCR can occur and tremendous Au@Ag can be assembled along the formed dsDNA in HCR, which can act as the excellent substrate for Raman measurement and greatly amplify the Raman signal of R6G on the Au@Ag. Afterwards, the key factor, ratio between probe 2-Au@Ag (P2) and probe1-Au@Ag (P1), affects the detection sensitivity is systematically optimized for the best sensing performance. The SERS signal of R6G, best measured at 1651cm(-1),increases linearly in the wide range from 1 pM to 10nM. The detection limit can be as low as 0.1 pM.
机译:作者描述了17-雌二醇的基于适体的测定。它依赖于表面增强拉曼散射(SERS)和杂交链反应(HCR)的结合使用。施用17-雌二醇的适体作为识别探针施加,这导致优异的特异性。靶标17-雌二醇的具体识别诱导DNA 2的自由度,其将在Au @ Ag上打开探针1的茎环结构并形成部分DSDNA结构。利用切口酶,部分DSDNA将水解,并且在Au @ Ag上的驻留SSDNA将形成小的茎环结构。借助于在微孔板的孔的其他探针2修饰Au @ Ag和预固定化探针3中,可以发生无酶HCR,并且可以沿HCR中的形成的DSDNA组装巨大的Au @ Ag,这可以采用作为拉曼测量的优异基材,大大放大Au @ Ag上R6G的拉曼信号。之后,探头2-AU @ AG(P2)和探测器1-AU @ AG(P1)之间的关键因素,比率影响检测灵敏度,系统地优化了最佳的感测性能。 R6G的SERS信号,最佳测量在1651cm(-1)中,在宽范围内,从1pm至10nm的宽范围内延伸。检测限度可以低至0.1 pm。

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