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A Novel Fiber Optic Surface Plasmon Resonance Biosensors with Special Boronic Acid Derivative to Detect Glycoprotein

机译:具有特殊硼酸衍生物的新型光纤表面等离子体共振生物传感器用于检测糖蛋白

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摘要

We proposed and demonstrated a novel tilted fiber Bragg grating (TFBG)-based surface plasmon resonance (SPR) label-free biosensor via a special boronic acid derivative to detect glycoprotein with high sensitivity and selectivity. TFBG, as an effective sensing element for optical sensing in near-infrared wavelengths, possess the unique capability of easily exciting the SPR effect on fiber surface which coated with a nano-scale metal layer. SPR properties can be accurately detected by measuring the variation of transmitted spectra at optical communication wavelengths. In our experiment, a 10° TFBG coated with a 50 nm gold film was manufactured to stimulate SPR on a sensor surface. To detect glycoprotein selectively, the sensor was immobilized using designed phenylboronic acid as the recognition molecule, which can covalently bond with 1,2- or 1,3-diols to form five- or six-membered cyclic complexes for attaching diol-containing biomolecules and proteins. The phenylboronic acid was synthetized with long alkyl groups offering more flexible space, which was able to improve the capability of binding glycoprotein. The proposed TFBG-SPR sensors exhibit good selectivity and repeatability with a protein concentration sensitivity up to 2.867 dB/ (mg/mL) and a limit of detection (LOD) of 15.56 nM.
机译:我们提出并演示了一种新颖的基于倾斜光纤布拉格光栅(TFBG)的表面等离子体共振(SPR)无标签生物传感器,它通过一种特殊的硼酸衍生物来检测糖蛋白,具有很高的灵敏度和选择性。 TFBG作为一种有效的近红外波长光感测元件,具有独特的能力,可以轻松激发纳米级金属层覆盖的纤维表面的SPR效应。通过测量光通信波长处的透射光谱的变化,可以准确地检测SPR属性。在我们的实验中,制造了涂有50 nm金膜的10°TFBG,以刺激传感器表面上的SPR。为了选择性地检测糖蛋白,使用设计的苯基硼酸作为识别分子固定了传感器,该苯基硼酸可以与1,2-或1,3-二醇共价键形成五或六元环状复合物,用于连接含二醇的生物分子和蛋白质。苯基硼酸是与长烷基合成的,具有更长的弹性空间,能够提高结合糖蛋白的能力。提出的TFBG-SPR传感器具有良好的选择性和可重复性,蛋白质浓度灵敏度高达2.867 dB /(mg / mL),检测极限(LOD)为15.56 nM。

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