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A novel ratiometric fluorescent immunoassay for human α-fetoprotein based on carbon nanodot-doped silica nanoparticles and FITC

机译:基于碳纳米点掺杂的二氧化硅纳米粒子和FITC的新型人源甲胎蛋白比例荧光免疫测定

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The application of fluorescent carbon nanodots (C-dots or CD), non-toxic particulate organic labels, to disease biomarker detection is still in its earliest stage of development. In the effort described here, a novel ratiometric immunoassay was developed to target a model protein disease biomarker, alpha-fetoprotein (AFP), using C-dot doped silica nanoparticles (CD-SNPs) and fluorescein isothiocyanate (FITC) as signaling agents. Highly fluorescent C-dots were hydrothermally synthesized from citric acid and ethylene diamine. The C-dots were then encapsulated in silicate shells to yield 45 nm nanoparticles using a novel reverse microemulsion method, enabling convenient handling (centrifugation and washing) and straightforward surface chemistry modification to facilitate development of bioassays. Capture antibody capped CD-SNPs (Ab1-CD-SNPs), together with FITC labeled antibodies (Ab2-FITC) constituted a new ratiometric immunosensor for AFP, in which CD-SNPs functioned as both solid supports for washing and separation and as built-in reference signaling agents to correct for inconsistent environmental effects. A calibration curve was established between the ratiometric signal (the ratio of fluorescence signals of FITC and C-dots, F/C) and AFP concentration in the broad range of 0.317a€“280 ??g dLa?’1, exhibiting a useful linear range (0.317a€“35 ??g dLa?’1, R2 = 0.9977), low detection limit (0.317 ??g dLa?’1) and acceptable recovery (105a€“120%). This assay format can be applied to a wide range of immunoassay targets. Our demonstration of encapsulating low-cost, easily synthesized, highly-fluorescent C-dots into silica nanoparticles for use in immunoassays will be useful in expanding future applications of these carbon nanomaterials to areas such as in vivo cellular imaging, drug delivery, and in vitro cell labeling and biomolecule sensing.
机译:荧光碳纳米点(C点或CD),无毒颗粒有机标记物在疾病生物标记物检测中的应用仍处于发展的最早阶段。在此处描述的工作中,开发了一种新型的比例免疫分析法,以C型点掺杂的二氧化硅纳米颗粒(CD-SNP)和异硫氰酸荧光素(FITC)作为信号传导剂,靶向模型蛋白质疾病生物标志物,甲胎蛋白(AFP)。由柠檬酸和乙二胺水热合成高度荧光的C点。然后,使用新颖的反向微乳化方法将C点封装在硅酸盐壳中,以产生45 nm纳米颗粒,从而能够方便地进行处理(离心和洗涤),并进行简单的表面化学修饰以促进生物测定的发展。捕获抗体的CD-SNPs(Ab1-CD-SNPs)和FITC标记的抗体(Ab2-FITC)一起构成了AFP的新型比例免疫传感器,其中CD-SNPs既是洗涤和分离的固体支持物,又是参考信号传导剂以纠正不一致的环境影响。在比例信号(FITC和C点的荧光信号之比,F / C)与AFP浓度(在0.317a?280 dgLa-1'1的宽范围内)之间建立了一条校准曲线。线性范围(0.317?g dLa?'1,R2 = 0.9977),低检测限(0.317?g dLa?'1)和可接受的回收率(105a?120%)。该测定形式可应用于多种免疫测定靶标。我们将低成本,易于合成的高荧光C点封装到二氧化硅纳米颗粒中用于免疫测定的演示,将有助于将这些碳纳米材料的未来应用扩展到诸如体内细胞成像,药物递送和体外等领域细胞标记和生物分子传感。

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