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光子晶体光纤中的长周期光栅作为一种光流控无标记生物传感器。

Long-period gratings in photonic crystal fiber as an optofluidic label-free biosensor.

机构信息

Department of Chemical Engineering and Materials Science, Stevens Institute of Technology, Hoboken, NJ 07030, USA.

出版信息

Biosens Bioelectron. 2011 Aug 15;26(12):4774-8. doi: 10.1016/j.bios.2011.05.048. Epub 2011 Jun 6.

Abstract

Using long-period gratings (LPG) inscribed in photonic crystal fiber (PCF) and coupling this structure with an optically aligned flow cell, we have developed an optofluidic refractive index transduction platform for label-free biosensing. The LPG-PCF scheme possesses extremely high sensitivity to the change in refractive index induced by localized binding event in different solution media. A model immunoassay experiment was carried out inside the air channels of PCF by a series of surface modification steps in sequence that include adsorption of poly(allylamine hydrochloride) monolayer, immobilization of anti-rat bone sialoprotein monoclonal primary antibody, and binding interactions with non-specific goat anti-rabbit IgG (H+L) and specific secondary goat anti-mouse IgG (H+L) antibodies. These adsorption and binding events were monitored in situ using the LPG-PCF by measuring the shift of the core-to-cladding mode coupling resonance wavelength. Steady and significant resonance changes, about 0.75 nm per nanometer-thick adsorbed/bound bio-molecules, have been observed following the sequence of the surface events with monolayer sensitivity, suggesting the promising potential of LPG-PCF for biological sensing and evaluation.

摘要

利用在光子晶体光纤(PCF)中写入的长周期光栅(LPG),并将这种结构与光对准的流动池相耦合,我们开发了一种用于无标记生物传感的光流变体折射率传输平台。LPG-PCF 方案对不同溶液介质中局部结合事件引起的折射率变化具有极高的灵敏度。通过一系列表面修饰步骤,在 PCF 的空气通道内进行了模型免疫分析实验,这些步骤包括吸附聚(盐酸烯丙胺)单层、固定抗大鼠骨唾液蛋白单克隆抗体,以及与非特异性兔抗鼠 IgG(H+L)和特异性兔抗鼠 IgG(H+L)抗体的结合相互作用。通过测量芯-包层模式耦合共振波长的偏移,使用 LPG-PCF 原位监测这些吸附和结合事件。在表面事件的顺序之后,观察到稳定且显著的共振变化,每纳米厚吸附/结合的生物分子约为 0.75nm,具有单层灵敏度,这表明 LPG-PCF 在生物传感和评估方面具有很大的应用潜力。

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