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Plasmonic biosensor detected human chorionic gonadotropin with naked eye

机译:等离子体生物传感器用肉眼检测人绒毛膜促性腺激素

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The traditional surface plasmon resonance (SPR) instrument has the advantages of real time, label-free and highsensitivity. This study mainly makes the traditional SPR instruments miniaturized into active plasmon colorimetricbiosensors, which is used for point of care and further improve the medical Level. Nano-printed technology is a simpleprocess technology that used in the preparation of nano-structure with advantages of low cost and high production, forthe future active plasmon colorimetric biosensors manufacturing has a very high Production advantages. Organic lightemitting diodes have the uniformity of light intensity at different angles, which is one of the indispensable conditions inthe detection process of plasmon bioassay. In this experiment, it is proved that the grating period is 555 nm, when therefraction value change from 1 to 1.33 the coupling wavelength shifted about 190 nm, the minimum refractive index is1.736×10~(-3) RIU. The binding reaction with β-hCG (1 μM) was enhanced by the bonding of Peptide (1 mM) with goldnanoparticles (15 nm), which was about 43.88 times higher than that of the original peptide (1 mM) and β-hCG (1 μM).That the minimum refraction value of the change in the sensitivity increased to 3.956×10~(-5) RIU. After the peptides (33nm) bonded Peptide (1 mM) and β-hCG (1 μM) were used for the active plasmon colorimetric biosensors. The plasmonat a measuring angle of 5 ° wavelength of the emission shifted 16 nm, and the measurement angle is 4 nm at themeasuring angle of -5 °.
机译:传统的表面等离振子共振(SPR)仪器具有实时,无标签和高识别的优点。 灵敏度。本研究主要是将传统的SPR仪器小型化为活性等离激元比色法 生物传感器,用于护理点并进一步提高医疗水平。纳米印刷技术很简单 用于制备具有低成本和高产量优势的纳米结构的工艺技术,用于 未来的有源等离激元比色生物传感器制造具有很高的生产优势。有机光 发光二极管在不同角度下具有均匀的光强度,这是光电二极管中必不可少的条件之一 等离子体激元生物测定的检测过程。在该实验中,证明了当激光束的光栅周期为555 nm时, 折射值从1更改为1.33,耦合波长偏移约190 nm,最小折射率为 1.736×10〜(-3)的RIU。肽(1 mM)与金的结合增强了与β-hCG(1μM)的结合反应 纳米粒子(15 nm),比原始肽(1 mM)和β-hCG(1μM)高约43.88倍。 灵敏度变化的最小折射值增加到3.956×10〜(-5)RIU。后肽(33 nm)结合肽(1 mM)和β-hCG(1μM)用于活性等离激元比色生物传感器。等离子体激元 在5°波长的测量角度下,发射光偏移了16 nm,而在 测量角度为-5°。

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