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Isotopic graphene–isolated-Au-nanocrystals with cellular Raman-silent signals for cancer cell pattern recognition

机译:同位素石墨烯-分离的Au-纳米晶体具有细胞拉曼沉默信号可用于癌细胞模式识别

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摘要

For cancer diagnosis, technologies must be capable of molecular recognition, and they must possess a built-in pattern recognition component for efficient imaging and discrimination of targeted cancer cells. Surface enhanced Raman scattering (SERS) tags based on plasmonically active nanoparticles hold promise for accurate and efficient cancer cell recognition, owing to ultra-narrow peak and sensitive optical properties. However, a complex fingerprint spectrum increases data analysis difficulty, making it necessary to develop multicolor SERS tags with a simple fingerprint spectrum. To address this, we herein fabricated SERS-encoded nanoparticles (NPs) with stable and simple fingerprint spectrum through synthesis of isotopic cellular Raman-silent graphene–isolated-Au-nanocrystals (GIANs) and conjugation with phospholipid-polyethylene glycol-linked aptamers to target proteins overexpressed on the cancer cell surface. GIANs, which possess the properties of graphitic nanomaterials, such as super-stable optical properties and high Raman cross-section, showed enhanced SERS signals. The 2D-band Raman shift of GIAN, which located in the cellular Raman-silent region, was easily regulated through fabrication of isotopic GIANs without changing their molecular structure. Such GIAN tags demonstrated multiplexed Raman imaging capability, both in vivo and in vitro, with low background interference. Moreover, cell membrane protein (nucleolin, mucin and epithelial cell adhesion molecule)-specific, aptamer-conjugated isotopic GIANs were fabricated and feasibly applied to built-in coding for rapid imaging and pattern recognition of targeted cancer cells. Such isotopic GIAN-aptamer-encoders show high potential for efficient cancer cell identification and diagnosis.
机译:对于癌症诊断,技术必须能够进行分子识别,并且它们必须具有内置的模式识别组件,以便对目标癌细胞进行有效的成像和识别。由于超窄峰和灵敏的光学特性,基于等离子活性纳米颗粒的表面增强拉曼散射(SERS)标签有望准确,有效地识别癌细胞。但是,复杂的指纹光谱增加了数据分析的难度,因此有必要开发具有简单指纹光谱的多色SERS标签。为了解决这个问题,我们在这里通过合成同位素细胞拉曼沉默石墨烯-分离的Au-纳米晶体(GIAN)并与磷脂-聚乙二醇连接的适体缀合来制备具有稳定且简单的指纹图谱的SERS编码纳米粒子(NP)。在癌细胞表面过度表达的蛋白质。具有石墨纳米材料特性(例如超稳定光学特性和高拉曼横截面)的GIAN显示出增强的SERS信号。位于细胞拉曼沉默区的GIAN的2D带拉曼位移很容易通过同位素GIAN的制造来调节,而无需改变其分子结构。此类GIAN标签在体内和体外均表现出多重拉曼成像能力,且背景干扰低。此外,细胞膜蛋白(核仁素,粘蛋白和上皮细胞粘附分子)特异性的,适体缀合的同位素GIANs被制造出来并可行地应用于内置编码,以对靶癌细胞进行快速成像和模式识别。此类同位素GIAN-适体-编码器显示出有效进行癌细胞鉴定和诊断的巨大潜力。

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