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首页> 外文期刊>Nanotechnology >Aptamer/magnetic nanoparticles decorated with fluorescent gold nanoclusters for selective detection and collection of human promyelocytic leukemia (HL-60) cells from a mixture
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Aptamer/magnetic nanoparticles decorated with fluorescent gold nanoclusters for selective detection and collection of human promyelocytic leukemia (HL-60) cells from a mixture

机译:适用/磁性纳米颗粒装饰着荧光金纳米液,用于从混合物中选择性检测和收集人临时细胞白血病(HL-60)细胞

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In the present work, a fluorescent gold nanoclusters (GNCs)/superparamagnetic (Fe3O4/GNCs) nanoprobe was prepared via a facile approach for the selective detection and imaging of human leukemica cancer cells (HL-60). (gamma-Mercaptopropyl)trimethoxysilane (MPS) was used as a stabilizer to prepare functionalized GNCs. The prepared GNCs@MPS was then self-assembly decorated on the surface of Fe3O4@SiO2 nanoparticles followed by poly(ethylene glycol) dimethacrylate (PGD) addition at room temperature to form Fe3O4/GNCs nanoprobe. Surface functionalization of the Fe3O4/GNCs with the thiol-modified KH1C12 aptamer was done through thiol-en click reaction between PGD and the thiol group of the aptamer. An extensive characterization of the Fe3O4/GNCs revealed strong red fluorescence (lambda(em) = 627 nm), T-2-based contrast agent for MRI and excellent colloidal and photo stability in buffer medium. So, the aptamer-functionalized Fe3O4/GNCs nanoprobe (Fe3O4/GNCs/Aptamer) is capable to uptake and dual-image HL-60 cancer cells from a mixture. Furthermore, the MRI signal intensity of the pictures decreased linearly with an increase in the concentrations of the nanoprobe. It is also enable to detect cancer cells from a range of concentrations 10 up to 200 cells mu L-1. The fluorescent/magnetic characteristics of the nanoprobe are of great significance for MRI-based and fluorescence imaging and collection of HL-60 cancer cells which implies potential help for the development of early diagnosis of highly malignant human leukemia.
机译:在目前的工作中,荧光金纳米簇(GNCs)/超顺磁性(四氧化三铁/ GNCs)纳米探针经人类leukemica癌细胞(HL-60)的选择性的检测和成像的方法容易制备。 (γ-巯基丙基)三甲氧基硅烷(MPS)用作稳定剂,以制备官能化GNCs。将制备的GNCs @ MPS然后自组装装饰随后聚的Fe3O4 @纳米SiO2的表面上(乙二醇)二甲基丙烯酸酯(PGD)除了在室温下以形成四氧化三铁/ GNCs纳米探针。四氧化三铁的表面功能/与巯基修饰的适体KH1C12通过GNCs PGD和巯基的适体之间的巯基带点击反应完成。四氧化三铁的广泛表征/ GNCs显示强的红色荧光(拉姆达(EM)= 627纳米)在缓冲介质中,基于T-2-造影剂用于MRI和极佳的胶体和光稳定性。因此,适体官能化的四氧化三铁/ GNCs纳米探针(四氧化三铁/ GNCs /适配子)能够从混合物中吸收和双图像HL-60的癌细胞。此外,图像的MRI信号强度的增加纳米探针的浓度呈线性下降。它也使得能够从一个浓度范围10的检测癌细胞多达200名细胞亩L-1。纳米探针的荧光/磁特性是对HL-60的癌细胞,这意味着为高度恶性的人类白血病的早期诊断的发展潜力帮助的基于MRI和荧光成像和收藏意义重大。

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