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Label-free IgG/anti-IgG biosensing based on long period fiber gratings: a comprehensive feasibility study

机译:基于长期光纤光栅的无标签IgG /抗IgG生物溶解:全面的可行性研究

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Long period fiber gratings (LPGs) have recently been proposed as label-free biosensors. A biochemical interaction occurring along the grating region can be evaluated as a refractive index (RI) change, which modifies the transmission spectrum of the fiber. This is an emergent, alternative choice with respect to other label-free optical systems, such as surface plasmon resonance, interferometric and in-fiber configurations, and resonating structures. In this work, various types of not-coated LPGs, in which the coupling occurs with increasing cladding mode orders, were manufactured for increasing the RI sensitivity of these sensors. After the functionalization of the fiber surface using Eudragit L100 copolymer, a label-free IgG/anti-IgG bioassay was realized for analyzing the antigen/antibody interaction following the same model assay. A comprehensive feasibility study was carried out among the different LPGs in order to assess and compare the biosensor performance, highlighting the advantages and the disadvantages of each type. Experimental results proved an improvement in the RI sensitivity and in the biosensor performance in the case of high-order cladding mode LPGs, with values of detection limit lower than 50 ng mL~(-1) (330 pM). The performance enhancement can be explained with the increase in the penetration depth of the evanescent field due to the increase of the cladding mode order. The sensor response was also studied using complex matrices made up of human serum.
机译:最近已经提出了长期光纤光栅(LPG)作为无标签的生物传感器。沿光栅区域发生的生物化学相互作用可以评估为折射率(RI)变化,其改变纤维的透射光谱。这是关于其他无标记光学系统的紧急,替代选择,例如表面等离子体共振,干涉测量和光纤配置以及谐振结构。在这项工作中,制造了各种类型的未涂覆的LPG,其中耦合随着覆层序列顺序而发生,以增加这些传感器的RI灵敏度。在使用Eudragit L100共聚物的纤维表面官能化之后,实现了无标记的IgG /抗IgG生物测定,用于分析相同模型测定后的抗原/抗体相互作用。在不同的LPG中进行了全面的可行性研究,以评估和比较生物传感器性能,突出各种类型的优点和缺点。实验结果证明了RI敏感性的改善和在高阶包层液体LPG的情况下,检测极限值低于50ng〜(-1)(330μm)值。由于覆层模式顺序的增加,通过增加渐逝场的穿透深度的增加可以解释性能增强。还使用由人血清组成的复杂矩阵研究了传感器响应。

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