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Phase-contrast BioCD: high-speed immunoassays at sub-picogram detection levels

机译:相位对比度BIOCD:子类别检测水平的高速免疫测定

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We previously introduced the biological compact disk (BioCD) as a sensitive detection platform to detect patterned biomolecules immobilized on the surface of a spinning disk. Spinning-disk interferometry allows high speed detection (10 microseconds per spot) of optical path length changes down to sub-nanometer scales with high repeatability. The key to performing stable interferometry on a mechanically spinning disk is self-referencing: locking the phase of the signal and reference beams to quadrature (μ/2 phase difference) independent of mechanical vibrations or relative motion. Two quadrature classes of BioCD have been reported previously: the micro-diffraction class (MD-Class) and the adaptive optical class (AO-Class) {Peng, 2004 #565; Varma, 2004 #440}. In this paper, we introduce a third class of BioCD, the Phase-Contrast-Class (PC-Class) BioCD. Protein is immobilized using photolithography on a disk in a 1024 spoke pattern. The edge of the printed protein pattern diffracts a focused laser beam that is detected in the Fourier plane with a split detector. The signal from the split detector is differenced, which plays a role in the electronic domain similar to that of a phase plate in optical phase contrast imaging. The PC-Class BioCD is simple in both theory and implementation, requiring no microstructure fabrication and no complex detection. Its potential in high speed label-free biosensing is demonstrated by a two-analyte immunoassay that shows good rejection of nonspecific binding and low antibody cross-reactivity. Immunoassays were performed against IgG immunoglobulins with detection of bound analyte on pictogram level. To show the potential of scaling up to hundreds or thousands of analytes per disk, an experiment was also performed with small drops of protein solution.
机译:我们先前引入的生物光盘(BioCD),其为灵敏的检测平台,以检测固定在旋转盘的表面上的图案化的生物分子。转盘式干涉允许光路长度的高速检测(每点10微秒)的变化下降到具有高重复性亚纳米尺度。到机械旋转盘上进行稳定的干涉的关键是自参考:锁定信号和基准的相位的光束到正交(μ/ 2相位差)的机械振动或相对运动的独立的。 BioCD的两个正交类之前已经报道:微衍射类(MD级)和自适应光学类(AO级){彭,2004#565;瓦玛,2004#440}。在本文中,我们引入第三类BioCD,相衬级(PC级)BioCD的。蛋白质是用在1024辐条模式的磁盘上的照相平版印刷术固定。印刷蛋白图案的边缘衍射是在傅立叶平面检测到具有分裂检测器的聚焦激光束。从分割检测器的信号被求差,其在电子领域类似于光学相位对比成像的相位板的作用。在PC级BioCD是在理论和实现简单,不需要组织制造和没有复杂的检测。其在高速无标记生物传感电位由两个分析物免疫测定的是结合示出了良好的排斥反应的非特异性和低抗体的交叉反应性证实。免疫测定法用在象形电平检测结合的分析物的抗IgG免疫球蛋白进行。为了展示扩展到数百或数千每个磁盘分析物的潜力,也与蛋白质溶液的小水珠而进行的试验。

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