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首页> 外文期刊>Nanoscale >Highly narrow nanogap-containing Au@Au core-shell SERS nanoparticles: size-dependent Raman enhancement and applications in cancer cell imaging
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Highly narrow nanogap-containing Au@Au core-shell SERS nanoparticles: size-dependent Raman enhancement and applications in cancer cell imaging

机译:高度狭窄nanogap-containing Au@Au核壳ser纳米粒子:尺度依赖的拉曼增强和应用在癌症细胞成像

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Cellular imaging technologies employing metallic surface-enhanced Raman scattering (SERS) tags have gained much interest toward clinical diagnostics, but they are still suffering from poor controlled distribution of hot spots and reproducibility of SERS signals. Here, we report the fabrication and characterization of high narrow nanogap-containing Au@Au core-shell SERS nanoparticles (GCNPs) for the identification and imaging of proteins overexpressed on the surface of cancer cells. First, plasmonic nanostructures are made of gold nanoparticles (similar to 15 nm) coated with gold shells, between which a highly narrow and uniform nanogap (similar to 1.1 nm) is formed owing to polyA anchored on the Au cores. The well controlled distribution of Raman reporter molecules, such as 4,4'-dipyridyl (44DP) and 5,5'-dithiobis(2-nitrobenzoic acid) (DTNB), are readily encoded in the nanogap and can generate strong, reproducible SERS signals. In addition, we have investigated the size-dependent SERS activity of GCNPs and found that with the same laser wavelength, the Raman enhancement discriminated between particle sizes. The maximum Raman enhancement was achieved at a certain threshold of particle size (similar to 76 nm). High narrow nanogap-containing Au@Au core-shell SERS tags (GCTs) were prepared via the functionalization of hyaluronic acid (HA) on GCNPs, which recognized the CD44 receptor, a tumor-associated surface biomarker. And it was shown that GCTs have a good targeting ability to tumour cells and promising prospects for multiplex biomarker detection.
机译:细胞成像技术采用金属表面增强拉曼散射(ser)标记获得了很多利益向临床吗诊断,但他们仍然遭受可怜的热点的分布和控制ser的再现性信号。高的制造和表征窄nanogap-containing Au@Au核壳爵士识别和纳米颗粒(GCNPs)成像表面蛋白的过表达癌症细胞。的金纳米粒子(类似于15海里)涂上金壳之间,一个高度狭窄的和统一的nanogap(类似于1.1海里)由于聚形成固定在非盟的核心。油井分布拉曼控制记者分子,如4,4 '联吡啶(44 dp)5、5 ' -dithiobis (2-nitrobenzoic酸)(DTNB),很容易在nanogap编码,可以吗产生强烈的,可再生的ser信号。另外,我们已经调查了尺度依赖的ser GCNPs和发现的活性相同的激光波长,拉曼增强粒子大小之间的歧视。拉曼增强是在一个特定的实现阈值的粒度(类似于76海里)。高狭窄nanogap-containing Au@Au核壳ser标签(生殖)准备通过功能化的透明质酸(HA)GCNPs识别受体CD44, a肿瘤相关表面生物标志物。表明生殖芽细胞肿瘤有良好的定位能力肿瘤细胞,发展前景十分广阔多路复用生物标志物检测。

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