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Whispering Gallery Mode Resonators for Rapid Label-Free Biosensing in Small Volume Droplets

机译:耳语画廊模式谐振器,用于小体积液滴中的快速无标签生物传感

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Rapid biosensing requires fast mass transport of the analyte to the surface of the sensing element. To optimize analysis times, both mass transport in solution and the geometry and size of the sensing element need to be considered. Small dielectric spheres, tens of microns in diameter, can act as label-free biosensors using whispering gallery mode (WGM) resonances. WGM resonances are sensitive to the effective refractive index, which changes upon analyte binding to recognition sites on functionalized resonators. The spherical geometry and tens of microns diameter of these resonators provides an efficient target for sensing while their compact size enables detection in limited volumes. Here, we explore conditions leading to rapid analyte detection using WGM resonators as label-free sensors in 10 μL sample droplets. Droplet evaporation leads to potentially useful convective mixing, but also limits the time over which analysis can be completed. We show that active droplet mixing combined with initial binding rate measurements is required for accurate nanomolar protein quantification within the first minute following injection.
机译:快速的生物传感需要将分析物快速传质到传感元件的表面。为了优化分析时间,既要考虑溶液中的质量迁移,又要考虑传感元件的几何形状和尺寸。直径数十微米的小介电球可以通过回音壁模式(WGM)共振充当无标签生物传感器。 WGM共振对有效折射率敏感,该有效折射率随分析物与功能化共振器上识别位点的结合而改变。这些谐振器的球形几何形状和数十微米的直径提供了一个有效的检测目标,而它们的紧凑尺寸使得可以在有限的体积内进行检测。在这里,我们探索了使用WGM共振器作为10μL样品液滴中的无标记传感器进行快速分析物检测的条件。液滴蒸发可能导致有用的对流混合,但也限制了可以完成分析的时间。我们显示,在注射后的第一分钟内,需要精确的纳摩尔蛋白定量结合主动液滴混合和初始结合速率测量。

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