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Fiber optic SPR sensor for human Immunoglobulin G measurement based on the MMF-NCF-MMF structure

机译:基于MMF-NCF-MMF结构的用于人体免疫球蛋白G的光纤SPR传感器

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摘要

A sensitive, simple fiber optic surface plasmon resonance (SPR) sensor based on the MMF-NCF-MMF structure is proposed in this work. The structure of the sensing part is constructed by a section of noncore fiber (NCF) sandwiched between two multimode fibers (MMF). Gold film with a thickness of 50 nm was uniformly sputtered on the outside surface of the NCF. SPR phenomenon was stimulated and experimentally verified when light propagates at the interface between the dielectric and the gold layers. The length of the NCF section was optimized by experiments and determined to be 12 mm. The refractive index (RI) sensitivity of the SPR sensor is 3475.1 nm/RIU in the RI range of 1.343-1.373. For the realization of human Immunoglobulin G detection, the surface of this SPR sensor needs to be biomodified. A simple process of polyelectrolyte self-assembled multilayers (PSAMs) deposition cycled four times utilizing diallyldimethyl ammonium chloride (PDDA) and styrenesulfonate sodium salt (PSS). And we choose goat anti-human immunoglobulin G-human immunoglobulin G as a bio-conjugated pair to examine the bio-sensing effectiveness of this SPR sensor, the maximum sensitivity of Immunoglobulin G (IgG) detection and the limit of detection (LOD) is calculated to be 57.06 nm/(mg/ml) and 1.75 mu g/ml, respectively. The proposed sensor is simple, easy to fabricate, low loss, cost-effective and can be used in numerous chemical and biological analyses.
机译:在这项工作中,提出了一种基于MMF-NCF-MMF结构的灵敏,简单的光纤表面等离子体共振(SPR)传感器。感应部分的结构由一段夹在两条多模光纤(MMF)之间的非芯光纤(NCF)构成。在NCF的外表面上均匀地溅射厚度为50nm的金膜。当光在电介质和金层之间的界面处传播时,刺激并通过实验验证了SPR现象。 NCF截面的长度通过实验进行了优化,确定为12 mm。在1.343-1.373的RI范围内,SPR传感器的折射率(RI)灵敏度为3475.1 nm / RIU。为了实现人类免疫球蛋白G的检测,需要对该SPR传感器的表面进行生物修饰。利用二烯丙基二甲基氯化铵(PDDA)和苯乙烯磺酸钠盐(PSS)进行的聚电解质自组装多层(PSAM)沉积的简单过程循环了四次。我们选择山羊抗人免疫球蛋白G-人免疫球蛋白G作为生物共轭对,以检查该SPR传感器的生物传感效果,免疫球蛋白G(IgG)检测的最大灵敏度和检测极限(LOD)为计算的分别为57.06nm /(mg / ml)和1.75μg/ ml。所提出的传感器简单,易于制造,损耗低,具有成本效益,可用于多种化学和生物学分析中。

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