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Differential-Phase Surface Plasmon Resonance Biosensor

机译:差分相表面等离子体共振生物传感器

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摘要

In this paper, a novel differential-phase-sensitive surface plasmon resonance biosensor (DP-SPRB) is proposed and developed, in which a two-frequency laser is integrated with a differential amplifier in order to analytically convert the phase modulation into amplitude modulation. With the use of the conventional envelope detection technique, the differential phase is precisely decoded in real time in terms of the demodulated amplitude. In order to verify high detection sensitivity of the DP-SPRB, a sucrose-water solution and glycerin-water solution at low concentrations were both tested, and the experimental results confirm that the detection sensitivity on wt percent concentration of the sucrose solution is 0.00001percent. Moreover, the real-time monitoring mouse IgG/antimouse IgG interaction shows the minimum concentration of mouse IgG to be at 10 fg/mL. To our knowledge, this is the highest sensitivity ever measured by a surface plasmon resonance biosensor. However, because of the limited dynamic range of DP-SPRB, it can only apply to biomolecule interactions at extremely low concentration.
机译:本文提出并开发了一种新型的差分相位敏感表面等离子体共振生物传感器(DP-SPRB),其中将两频激光器与差分放大器集成在一起,以将相位调制分析转换为幅度调制。使用常规的包络检测技术,就可以根据解调后的幅度实时准确地对差分相位进行解码。为了验证DP-SPRB的高检测灵敏度,分别测试了低浓度的蔗糖水溶液和甘油水溶液,实验结果证实,对蔗糖溶液的重量百分比浓度,检测灵敏度为0.00001% 。此外,实时监测的小鼠IgG /抗鼠IgG相互作用显示,小鼠IgG的最小浓度为10 fg / mL。据我们所知,这是表面等离子体共振生物传感器测得的最高灵敏度。但是,由于DP-SPRB的动态范围有限,它只能适用于极低浓度的生物分子相互作用。

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