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Label-Free Detection of Tear Biomarkers Using Hydrogel Coated Gold Nanoshells in a Localized Surface Plasmon Resonance-Based Biosensor

机译:在局部基于表面等离子共振的生物传感器中使用水凝胶涂层金纳米壳的泪液生物标记物的无标签检测。

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摘要

The dependence of the localized surface plasmon resonance (LSPR) of noble metal nanomaterials on refractive index makes LSPR a useful, label-free signal transduction strategy for biosensing. In particular, by decorating gold nanomaterials with molecular recognition agents, analytes of interest can be trapped near the surface, resulting in an increased refractive index surrounding the nanomaterial and, consequently, a red-shift in the LSPR wavelength. In this work, ionic poly(N-isopropylacrylamide-co-methacrylic acid) (PNM) hydrogels were used as protein receptors because PNM nanogels exhibit a large increase in refractive index upon protein binding. Specifically, PNM hydrogels were synthesized on the surface of silica gold nanoshells (AuNSs). This composite material () was used to detect changes in the concentration of two protein biomarkers of chronic dry eye: lysozyme and lactoferrin. Both of these proteins have high isoelectric points, resulting in electrostatic attraction between the negatively charged PNM hydrogels and positively charged proteins. Upon binding lysozyme or lactoferrin, exhibit large, concentration dependent red-shifts in LSPR wavelength, which enabled detection of clinically relevant concentration changes of both biomarkers in human tears. The LSPR-based biosensor described herein has potential utility as an affordable screening tool for chronic dry eye and associated conditions.
机译:贵金属纳米材料的局部表面等离子体共振(LSPR)对折射率的依赖性使LSPR成为一种有用的,无标记的生物传感信号转导策略。特别地,通过用分子识别剂修饰金纳米材料,感兴趣的分析物可以被捕集在表面附近,导致纳米材料周围的折射率增加,因此,LSPR波长发生红移。在这项工作中,离子型聚(N-异丙基丙烯酰胺-共-甲基丙烯酸)(PNM)水凝胶被用作蛋白质受体,因为PNM纳米凝胶在结合蛋白质时会表现出较大的折射率增加。具体而言,PNM水凝胶是在二氧化硅金纳米壳(AuNSs)的表面上合成的。这种复合材料()用于检测慢性干眼症的两种蛋白质生物标记物:溶菌酶和乳铁蛋白的浓度变化。这两种蛋白质均具有高等电点,导致带负电荷的PNM水凝胶与带正电荷的蛋白质之间具有静电吸引。结合溶菌酶或乳铁蛋白后,LSPR波长显示出较大的浓度依赖性红移,从而能够检测人眼中两种生物标记物的临床相关浓度变化。本文所述的基于LSPR的生物传感器具有作为慢性干眼症和相关疾病的负担得起的筛选工具的潜在用途。

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