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Point-of-Care Surface Plasmon Resonance Biosensor for Stroke Biomarkers NT-proBNP and S100β Using a Functionalized Gold Chip with Specific Antibody

机译:用具有特异性抗体的官能化金芯片的中风生物标志物NT-probnp和S100β的护理表面等离子体传感器

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摘要

Surface-plasmon-resonance (SPR) is a quantum-electromagnetic phenomenon arising from the interaction of light with free electrons at a metal-dielectric interface. At a specific angle/wavelength of light, the photon’s energy is transferred to excite the oscillation of the free electrons on the surface. A change in the refractive-index (RI) may occur, which is influenced by the analyte concentration in the medium in close contact with the metal surface. SPR has been widely used for the detection of gaseous, liquid, or solid samples. In this study, a functionalized specific SPR chip was designed and used in a novel point-of-care SPR module (PhotonicSys SPR H5) for the detection of the stroke biomarkers NT-proBNP and S100β. These biomarkers have proven to be good for stroke diagnosis, with sensitivity and specificity of >85%. Specific detection was done by binding a biomolecular-recognizing antibody onto the Au SPR-chip. Detection was tested in water and plasma samples. NT-proBNP and S100β were detected in a range of concentrations for stroke, from 0.1 ng/mL to 10 ng/mL. The RI of the blank plasma samples was 1.362412, and the lowest concentration tested for both biomarkers showed a prominent shift in the RI signal (0.25 ng/mL NT-proBNP (1.364215) and S100β (1.364024)). The sensor demonstrated a clinically relevant limit-of-detection of less than ng/mL.
机译:表面等离子体共振(SPR)是由金属介质界面处的光与游离电子的相互作用产生的量子电磁现象。在特定的角度/波长的光中,光子的能量被转移以激发表面上的自由电子振荡。可能发生折射率(RI)的变化,其受与金属表面密切接触的介质中的分析物浓度的影响。 SPR已被广泛用于检测气态,液体或固体样品。在该研究中,设计并用于新颖的护理点SPR模块(Photonicsys SPR H5)中设计并使用了用于检测行程生物标志物NT-probnp和S100β的研究。这些生物标志物已被证明对中风诊断有益,具有敏感性和特异性> 85%。通过将生物分子识别抗体结合到Au Spr芯片上通过结合特异性检测。在水和血浆样品中测试检测。在中风的浓度范围内检测NT-probNP和S100β,从0.1ng / ml到10ng / ml。坯料等离子体样品的Ri为1.362412,并且对两个生物标志物测试的最低浓度在R 1信号中显示出突出的偏移(0.25ng / ml NT-probnp(1.364215)和S100β(1.364024))。传感器展示了临床相关的探测限制小于Ng / ml。

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