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Label-free Multi-Analyte Detection Using a BioCD

机译:使用BioCD的无标签多分析物检测

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We previously reported the application of spinning-disk interferometry, implemented in a compact optical sensor format called the BioCD, in the detection of antigen-antibody recognition. The BioCD consists of interferometers micro-fabricated on the surface of a 2" laser mirror disk, which can spin up to 6000 rpm resulting in high data acquisition rates. The interferometric elements are fabricated by evaporating gold ridges on the mirror substrate operating in the linear sensitivity regime of the interferometer defined as quadrature. Antibodies or proteins are immobilized on the gold interferometric structures through alkanethiols, and the target molecules are immobilized by application of reagents or samples to the disk while it is spinning. The centrifugal force distributes the sample over the sensor surface, causing a change in the optical phase of the interferometric elements, which is detected in real time using a lock-in amplifier with small detection bandwidth. We detected the binding of Mouse IgG by immobilized Anti-Mouse IgG using the BioCD with a detection limit of 1 ng/ml and low non-specific binding. Furthermore, the selectivity of specific binding was found to be greater than 1 in 10000, determined using the response curve of the BioCD to exposures of specific and non-specific analytes of varying concentrations. This opens up the possibility of simultaneous detection of several analytes with the same sensor while maintaining high selectivity. In this paper we demonstrate simultaneous detection of Rabbit and Mouse IgG on the same disk. The sensitivity limit for multi-analyte detection remains the same as that for a single analyte. In addition to the ability to do simultaneous detection, the current detection scheme presents a way to reference the results of one track with respect to others, thus increasing the reliability of the data. Used in conjunction with high-density protein patterning techniques, the BioCD has the potential to be a highly multiplexed label-free high-speed sensor.
机译:我们先前报道了以称为BioCD的紧凑型光学传感器格式实现的旋转盘干涉术在检测抗原抗体识别中的应用。 BioCD由微加工在2英寸激光镜盘表面上的干涉仪组成,该干涉仪可旋转至6000 rpm,从而获得很高的数据采集速率。干涉元件是通过蒸发镜面基板上的金脊以线性方式蒸发而制成的干涉仪的灵敏度范围定义为正交,通过链烷硫醇将抗体或蛋白质固定在金干涉结构上,并通过在旋转过程中将试剂或样品施加到圆盘上来固定目标分子。传感器表面,导致干涉元素的光学相位发生变化,可使用具有较小检测带宽的锁定放大器实时检测到,我们使用BioCD结合固定的抗小鼠IgG检测了小鼠IgG的结合。检出限为1 ng / ml,非特异性结合率低,而且发现特异性结合的选择性使用BioCD对浓度不同的特定和非特定分析物的暴露响应曲线确定的大于10000的1。这为使用同一传感器同时检测几种分析物同时保持高选择性提供了可能性。在本文中,我们演示了在同一磁盘上同时检测兔和小鼠IgG的方法。多种分析物检测的灵敏度极限与单一分析物的灵敏度极限保持相同。除了能够同时进行检测的能力外,当前的检测方案还提供了一种相对于其他轨道参考一个轨道结果的方法,从而提高了数据的可靠性。与高密度蛋白质图案技术结合使用,BioCD有潜力成为高度复用的无标记高速传感器。

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