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Multiscale 2D-SPR Biosensing for Cell Chips

机译:细胞芯片的多尺度2D-SPR生物传感

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摘要

Evaluating cell activity and functions in different-sized cell chambers requires multiscale sensing. We have been developing multiscale biosensing applied from 10μm to 1mm. We measured mouse IgG in micro wells using a high-resolution two-dimensional surface plasmon resonance (SPR) imaging affinity sensor. This sensor uses high refractive optics, a 1X to 7X microscopic lens, and a cooled CCD camera. The micro-well array was prepared with a PDMS film on gold sensor film. Protein A immobilized on sensor film was used for IgG recognition. SPR sensitivity was dramatically decreased with 10 and 8.5 μm microwells. To improve sensor sensitivity, we optimized the sensor's measurement angle and exposure time, enabling mouse IgG to be detected in wells of 1 mm, 30 μm, and 10 μm using the same 2D-SPR imaging sensor and measurement protocol. These results show the feasibility of multiscale biosensing use in antibody production in a micro well or a cell chamber.
机译:在不同大小的细胞室内评估细胞活性和功能需要多尺度传感。我们一直在开发从10μm到1mm的多尺度生物传感。我们使用高分辨率的二维表面等离振子共振(SPR)成像亲和力传感器在微孔中测量了小鼠IgG。该传感器使用高折射光学元件,1X到7X的显微镜镜头以及冷却的CCD相机。用PDMS膜在金传感器膜上制备微孔阵列。固定在传感器膜上的蛋白A用于IgG识别。使用10和8.5μm微孔时,SPR灵敏度显着降低。为了提高传感器的灵敏度,我们优化了传感器的测量角度和曝光时间,使用相同的2D-SPR成像传感器和测量协议,可以在1 mm,30μm和10μm的孔中检测到小鼠IgG。这些结果表明在微孔或细胞室中抗体生产中多尺度生物传感应用的可行性。

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