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首页> 外文期刊>Analytical chemistry >Enhancing Sensitivity and Selectivity of Long-Period Grating Sensors using Structure-Switching Aptamers Bound to Gold-Doped Macroporous Silica Coatings
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Enhancing Sensitivity and Selectivity of Long-Period Grating Sensors using Structure-Switching Aptamers Bound to Gold-Doped Macroporous Silica Coatings

机译:使用与掺金大孔二氧化硅涂层结合的结构切换适配体提高长周期光栅传感器的灵敏度和选择性

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摘要

High surface area, sol--gel derived macroporous silica films doped with gold nanoparticles (AuNP) are used as a platform for high-density affinity-based immobilization of functional structure-switching DNA aptamer molecules onto Michelson interferometer long-period grating (LPG) fiber sensors, allowing for label-free detection of small molecular weight analytes such as adenosine triphosphate (ATP). The high surface area afforded by the sol-gel derived material allowed high loading of DNA aptamers, while the inclusion of gold nanoparticles within the silica film provided a high refractive index (RI) overlay, which is required to enhance the sensitivity of the LPG sensor according to our numerical simulations. By using a structure-switching aptamer construct that could release an oligonucleotide upon binding of ATP, the effective change in RI was both enhanced and inverted (i.e., binding of ATP caused a net reduction in molecular weight and refractive index), resulting in a system that prevented signals originating from nonspecific binding. This is the first report on the coupling of aptamers to LPG fiber sensors and the first use of high RI AuNP/silica films as supports to immobilize biomolecules onto the LPG sensor surface. The dual functionality of such films to both improve binding density and LPG sensor cladding refractive index results in a substantial enhancement in the sensitivity of such sensors for small molecule detection.
机译:掺杂了金纳米颗粒 (AuNP) 的高比表面积溶胶-凝胶衍生的大孔二氧化硅薄膜被用作平台,用于将功能结构转换 DNA 适配体分子高密度基于亲和力的固定在迈克尔逊干涉仪长周期光栅 (LPG) 光纤传感器上,从而实现小分子量分析物(如三磷酸腺苷 (ATP) )的无标记检测。溶胶-凝胶衍生材料提供的高表面积允许高负载DNA适配体,而在二氧化硅薄膜中包含金纳米颗粒提供了高折射率(RI)覆盖层,这是提高LPG传感器灵敏度所必需的根据我们的数值模拟。通过使用可以在ATP结合时释放寡核苷酸的结构转换适配体构建体,RI的有效变化既增强又反转(即ATP的结合导致分子量和折射率的净降低),从而形成一个阻止来自非特异性结合的信号的系统。这是关于适配体与液化石油气纤维传感器偶联的第一份报告,也是首次使用高折射率AuNP/二氧化硅薄膜作为载体将生物分子固定在液化石油气传感器表面。这种薄膜具有提高结合密度和液化石油气传感器包层折射率的双重功能,从而大大提高了这种传感器对小分子检测的灵敏度。

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