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Homogeneous and high-density gold unit implanted optical labels for robust and sensitive point-of-care drug detection

机译:均匀和高密度黄金单位植入光学标签健壮和敏感医疗点药物检测

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Controllable integration of gold building blocks into mesoscopic architecture produces improved optical signals with preferable stability for biological sensing. Here, we developed novel optical labels with homogeneous and high-density implanted hydrophobic gold nanoparticles (AuNPs) throughout three-dimensional silica scaffolds. The dendritic silica supports with an extra-large pore size and highly accessible central-radial channels were employed as metal-affinity templates, for anchoring with AuNPs directly from the organic phase. The nano-assemblies exhibited a high unit loading capacity while maintaining the intrinsic optical characteristics of AuNPs. After phase transfer by the alkylsilane intermediate layer and exterior silica shell encapsulation, the nanocomposites revealed an amplified plasmonic absorption signal, excellent colloidal/optical stability and convenient surface functionalization. By integrating the silica labels into the lateral flow immunoassay strip for signal enhancement, the sensitive point-of-care detection of methamphetamine in urine was established. The limit of detection achieved 0.026 ng mL(-1), with a detection range from 0.023 to 375 ng mL(-1) in a 10 min assay, allows both visual and on-site quantitative analysis. Encouragingly, the potential interfering drugs in the sample matrix showed a negligible influence on the results, validating the superior specificity of the current immunoassay. The newly developed gold-implanted optical labels show prospects for point-of-care testing in a complex biological matrix with the desirable stability and signal amplification.
机译:可控的黄金集成构建块在介观结构生产改善光信号具有更好的稳定性生物传感。光学标签均匀和高密度疏水金纳米粒子植入(AuNPs)在三维硅支架。树突硅支持超大孔隙大小和高度central-radial访问被雇佣为metal-affinity渠道模板,与AuNPs直接从锚定有机相。单位负荷容量,同时保持很高AuNPs的固有光学特性。后由alkylsilane相转移过渡层和外部二氧化硅壳封装,纳米复合材料显示放大电浆吸收信号,很好胶体/光学稳定和方便表面功能化。硅标签到侧流免疫测定带信号增强,敏感的即时检测的冰毒尿液成立。达到0.026 ng毫升(1),探测距离从0.023到375 ng毫升(1)10分钟测定,允许视觉和现场定量分析。干扰药物显示在样本矩阵对结果的影响可以忽略不计,验证当前的优越的特异性免疫测定。光学标签显示前景医疗点测试在一个复杂的生物基质理想的稳定和信号放大。

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