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首页> 外文期刊>Analytical and bioanalytical chemistry >Multiplex micro-SERS imaging of cancer-related markers in cells and tissues using poly(allylamine)-coated Au@Ag nanoprobes
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Multiplex micro-SERS imaging of cancer-related markers in cells and tissues using poly(allylamine)-coated Au@Ag nanoprobes

机译:使用聚(allylamine) - 涂料Au @ Ag Nanoprobes,多重微量分癌细胞和组织中的细胞和组织中的癌症相关标记物

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Surface-enhanced Raman scattering (SERS) nanoprobes based on Au@Ag core@shell nanoparticles coated with poly(allylamine) were functionalized with small targeting molecules to evaluate simultaneously the level of expression of two cancer-related markers, both in cells and in tissues. The Au@Ag nanoparticles provide a high SERS signal enhancement in the visible range when combined with resonant Raman-active molecules. The poly(allylamine) coating plays a dual key role in (i) protecting the metal surface against the complex biological medium, leading to a stable signal of the Raman-active molecules, and (ii) enabling specific biofunctionalization through its amine functions. Using small targeting molecules linked to the polymer coating, two different nanoprobes (duplex approach) were designed. Each was able to specifically target a particular cancer-related marker: folate receptors (FRs) and sialic acid (SA). We demonstrate that the level of expression of these targeted markers can be evaluated following the SERS signal of the probes incubated on cells or tissues. The potential overexpression of folate receptors and of sialic acid was evaluated and measured in breast and ovarian cancerous tissue sections. In addition, FR and/or SA overexpression in the tumor region can be visualized with high contrast with respect to the healthy region and with high spatial accuracy consistent with histology by SERS imaging of the nanoprobe signal. Owing to the unique spectral signature of the designed nanoprobes, this approach offers an efficient tool for the spatially resolved, in situ measurement of the expression level of several cancer-related markers in tumors at the same time. Graphical abstract
机译:基于Au @ Ag核心的拉曼散射(SERS)纳米体散射(SERS)纳米粒体涂覆有聚(allylamine)的壳纳米粒子,用小靶向分子官能化,同时评估两种癌症相关标志物的表达水平,无论是细胞和组织。当与共振拉曼活性分子结合时,Au @ Ag纳米颗粒在可见范围内提供高分辨率信号增强。聚(烯丙胺)涂层在(i)中在保护金属表面抵抗复杂生物培养基中的双重关键作用,导致拉曼活性分子的稳定信号,和(ii)通过其胺函数能够获得特异性的生物官能化。使用与聚合物涂层连接的小靶向分子,设计了两种不同的纳米体(双链体方法)。每个都能够专门针对特定的癌症相关标志物:叶酸受体(FRS)和唾液酸(SA)。我们证明,可以在对细胞或组织中孵育的探针的SERS信号之后评估这些靶标记物的表达水平。在乳腺癌和卵巢癌组织切片中评估并测量叶酸受体和唾液酸的潜在过度表达。另外,肿瘤区的FR和/或SA过表达可以通过与健康区域的高对比度和高空间精度与纳米孔信号的SER成像相一致的高空间精度来观察。由于设计纳米体素的独特光谱特征,这种方法提供了一种有效的工具,用于在空间解决的情况下,同时肿瘤中几种癌症相关标记的表达水平的表达水平。图形概要

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