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Circulating tumor cell identification by functionalized silver-gold nanorods with multicolor super-enhanced SERS and photothermal resonances

机译:通过具有多色超增强SERS和光热共振的功能化银金纳米棒循环肿瘤细胞鉴定

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摘要

Nanotechnology has been extensively explored for cancer diagnostics. However, the specificity of current methods to identify simultaneously several cancer biomarkers is limited due to color overlapping of bio-conjugated nanoparticles. Here, we present a technique to increase both the molecular and spectral specificity of cancer diagnosis by using tunable silver-gold nanorods with narrow surface-enhanced Raman scattering (SERS) and high photothermal contrast. The silver-gold nanorods were functionalized with four Raman-active molecules and four antibodies specific to breast cancer markers and with leukocyte-specific CD45 marker. More than two orders of magnitude of SERS signal enhancement was observed from these hybrid nanosystems compared to conventional gold nanorods. Using an antibody rainbow cocktail, we demonstrated highly specific detection of single breast cancer cells in unprocessed human blood. By integrating multiplex targeting, multicolor coding, and multimodal detection, our approach has the potential to improve multispectral imaging of individual tumor cells in complex biological environments.
机译:纳米技术已被广泛地用于癌症诊断。然而,由于生物缀合的纳米颗粒的颜色重叠,当前同时鉴定几种癌症生物标志物的方法的特异性受到限制。在这里,我们提出一种技术,通过使用具有狭窄表面增强拉曼散射(SERS)和高光热对比度的可调银-金纳米棒来提高癌症诊断的分子和光谱特异性。用四个拉曼活性分子和四个对乳腺癌标志物具有特异性的抗体以及对白细胞具有特异性的CD45标记对银-金纳米棒进行功能化。与常规金纳米棒相比,从这些杂化纳米系统中观察到了两个数量级以上的SERS信号增强。使用抗体彩虹鸡尾酒,我们证明了未经处理的人类血液中单个乳腺癌细胞的高度特异性检测。通过整合多重靶向,多色编码和多模式检测,我们的方法具有改善复杂生物环境中单个肿瘤细胞多光谱成像的潜力。

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