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Adaptive interferometry of protein on a BioCD

机译:BioCD上蛋白质的自适应干涉法

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Adaptive spinning-disk interferometry is capable of measuring surface profiles of a thin biolayer with subnanometer longitudinal resolution. High-speed phase modulation in the signal beam arises from the moving surface height profile on the spinning disk and is detected as a homodyne signal via dynamic two-wave mixing. A photorefractive quantum-well device performs as an adaptive mixer that compensates disk wobble and vibration while it phase-locks the signal and reference waves in the phase quadrature condition (π/2 relative phase between the signal and local oscillator). We performed biosensing of immobilized monolayers of antibodies on the disk in both transmission and reflection detection modes. Single- and dual-analyte adaptive spinning-disk immunoassays were demonstrated with good specificity and without observable cross-reactivity. Reflection-mode detection enhances the biosensing sensitivity to one-twentieth of a protein monolayer, creates a topographic map of the protein layer, and can differentiate monolayers of different species by their effective optical thicknesses.
机译:自适应旋转盘干涉仪能够测量亚纳米级纵向分辨率的生物薄层的表面轮廓。信号束中的高速相位调制源自旋转磁盘上的移动表面高度轮廓,并通过动态两波混合检测为零差信号。光折射量子阱设备充当自适应混合器,在相位正交条件下(信号与本地振荡器之间的相对相位为π/ 2)将信号和参考波锁相时,补偿磁盘的摆动和振动。我们以透射和反射检测模式对磁盘上固定的单层抗体进行了生物传感。单分析物和双分析物适应性旋转盘免疫分析法具有良好的特异性,并且没有可观察到的交叉反应性。反射模式检测可增强对蛋白质单分子层的二十分之一的生物感应灵敏度,创建蛋白质层的地形图,并可以通过其有效的光学厚度区分不同物种的单分子层。

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