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首页> 外文期刊>Photonics and Nanostructures: Fundamentals and Applications >Highly sensitive and selective localized surface plasmon resonance biosensor for detecting glutamate realized on optical fiber substrate using gold nanoparticles
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Highly sensitive and selective localized surface plasmon resonance biosensor for detecting glutamate realized on optical fiber substrate using gold nanoparticles

机译:用于使用金纳米颗粒检测光纤基材上实现的谷氨酸的高度敏感和选择性局部表面等离子体传感器

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In this study, we fabricated and characterized a localized surface plasmon resonance-based biosensor comprising gold nanoparticles (AuNPs) on an optical fiber substrate to detect glutamate at concentrations ranging from 0 to 10 mM. To fabricate the probe, AuNPs were decorated on an unclad portion of an optical fiber, and the enzyme glutamate dehydrogenase and coenzyme nicotinamide adenine dinucleotide were co-immobilized over the AuNPs. The sensor was designed to operate according to an intensity modulation scheme where the absorbance changed as the glutamate concentration varied in the sample around the probe. The change in the absorbance was due to the chemical reaction between glutamate dehydrogenase, glutamate, water and NAD(+) which affected the refractive index of the medium around the AuNPs. The changes in the local refractive index led to significant variations in the absorbance of the AuNPs present in the sensing layer. The change recorded in the absorbance by AuNPs was 0.019 for the glutamate concentration range from 0 to 10 mM. The limit of detection and sensitivity of the sensor were determined as 0.36 mM and 0.0048 AU/mM, respectively. The sensor has advantages in terms of its low cost, immunity to electromagnetic interference, miniaturized probe, and capability of online monitoring and remote sensing because an optical fiber is used as the substrate for probe fabrication.
机译:在该研究中,我们制造和表征了一种基于表面等离子体共振的生物传感器,其包含在光纤基底上的金纳米颗粒(AUNP),以在0至10mm的浓度下检测谷氨酸。为了制造探针,在光纤的不合好处的部分上装饰了AUNP,并且酶谷氨酸脱氢酶和辅酶酰胺酰胺腺嘌呤二核苷酸在AUNP上共同固定。设计传感器根据强度调制方案操作,其中随着谷氨酸浓度在探针周围的样品中变化而改变的吸光度。吸光度的变化是由于谷氨酸脱氢酶,谷氨酸,水和NAD(+)之间的化学反应,这些反应影响了AUNP周围介质的折射率。局部折射率的变化导致感测层中存在的AUNP的吸光度的显着变化。谷植物吸光度记录的变化为0.019,用于谷氨酸浓度范围为0至10mm。传感器的检测极限分别确定为0.36mm和0.0048 Au / mm。该传感器在其低成本,对电磁干扰,小型化探测和在线监测和遥感能力的能力方面具有优点,因为光纤用作探针制造的基板。

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