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Photonic crystal enhanced fluorescence immunoassay on diatom biosilica

机译:光子晶体增强荧光免疫测定在硅藻中

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Fluorescence biosensing is one of the most established biosensing methods, particularly fluorescence spectroscopy and microscopy. These are two highly sensitive techniques but require high-grade electronics and optics to achieve the desired sensitivity. Efforts have been made to implement these methods using consumer grade electronics and simple optical setups for applications such as point-of-care diagnostics, but the sensitivity inherently suffers. Sensing substrates, capable of enhancing fluorescence are thus needed to achieve high sensitivity for such applications. In this paper, we demonstrate a photonic crystal-enhanced fluorescence immunoassay biosensor using diatom biosilica, which consists of silica frustules with sub-100 nm periodic pores. Utilizing the enhanced local optical field, the Purcell effect and increased surface area from the diatom photonic crystals, we create ultrasensitive immunoassay biosensors that can significantly enhance fluorescence spectroscopy as well as fluorescence imaging. Using standard antibody-antigen-labeled antibody immunoassay protocol, we experimentally achieved 100x and 10x better detection limit with fluorescence spectroscopy and fluorescence imaging respectively. The limit of detection of the mouse IgG goes down to 10(-16) M (14 fg/mL) and 10(-15) M (140 fg/mL) for the two respective detection modalities, virtually sensing a single mouse IgG molecule on each diatom frustule. The effectively enhanced fluorescence imaging in conjunction with the simple hot-spot counting analysis method used in this paper proves the great potential of diatom fluorescence immunoassay for point-of-care biosensing.
机译:荧光生物溶剂是最成熟的生物传感方法之一,特别是荧光光谱和显微镜。这些是两个高度敏感的技术,但需要高档电子和光学来达到所需的灵敏度。已经努力使用消费者级电子产品和用于护理点诊断的应用的简单光学设置来实现这些方法,但敏感性本身存在。因此,需要能够增强荧光的感测基材以实现对这种应用的高灵敏度。在本文中,我们用硅藻生物硅藻证明了光子晶体增强的荧光免疫测定生物传感器,其由具有亚100nm周期性孔的二氧化硅脱粉。利用增强型局部光学场,PURCELL效应和从硅藻光子晶体的增加的表面积,我们产生超细免疫测定生物传感器,其可以显着增强荧光光谱和荧光成像。使用标准抗体 - 抗原标记的抗体免疫测定方案,我们分别通过荧光光谱和荧光成像进行了100倍和10倍的更好的检测限。对于两个相应的检测方式,小鼠IgG的检测限达到10(-16)m(14fg / ml)和10(-15)m(140fg / ml),实际上感测单个小鼠IgG分子在每个硅藻土中。有效增强的荧光成像结合本文所用的简单热点计数分析方法证明了硅藻荧光免疫测定的巨大潜力,用于护理点生物溶解。

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