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Robust Smartphone Assisted Biosensing Based on Asymmetric Nanofluidic Grating Interferometry

机译:基于不对称纳米流体光栅干涉仪的鲁棒智能手机辅助生物传感

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摘要

Point-of-care systems enable fast therapy decisions on site without the need of any healthcare infrastructure. In addition to the sensitive detection, stable measurement by inexperienced persons outside of laboratory facilities is indispensable. A particular challenge in field applications is to reduce interference from environmental factors, such as temperature, to acceptable levels without sacrificing simplicity. Here, we present a smartphone-based point-of-care sensor. The method uses an optofluidic grating composed of alternating detection and reference channels arranged as a reflective phase grating. Biomolecules adsorbing to the detection channel alter the optical path length, while the parallel reference channels enable a direct common mode rejection within a single measurement. The optical setup is integrated in a compact design of a mobile readout device and the usability is ensured by a smartphone application. Our results show that different ambient temperatures do not have any influence on the signal. In a proof-of concept experiment we measured the accumulation of specific molecules in functionalized detection channels in real-time and without the need of any labeling. Therefore, the channel walls have been modified with biotin as capture molecules and the specific binding of streptavidin was detected. A mobile, reliable and robust point-of-care device has been realized by combining an inherently differential measurement concept with a smartphone-based, mobile readout device.
机译:即时医疗点系统无需任何医疗基础设施即可在现场快速做出治疗决策。除了灵敏的检测之外,还必须由经验丰富的人员在实验室之外进行稳定的测量。现场应用中的一个特殊挑战是在不牺牲简单性的情况下将环境因素(例如温度)的干扰降低到可接受的水平。在这里,我们介绍了一个基于智能手机的即时护理传感器。该方法使用光流体光栅,该光流体光栅由交替布置的检测通道和参考通道组成,布置为反射相位光栅。吸附到检测通道的生物分子会改变光路长度,而平行的参考通道则可以在单次测量中直接抑制共模。光学装置集成在移动读出设备的紧凑设计中,并且通过智能手机应用程序确保了可用性。我们的结果表明,不同的环境温度对信号没有任何影响。在概念验证实验中,我们实时测量了功能化检测通道中特定分子的积累,而无需任何标记。因此,通道壁已被生物素作为捕获分子修饰,并检测到链霉亲和素的特异性结合。通过将固有的差分测量概念与基于智能手机的移动读数设备相结合,已经实现了一种移动,可靠且强大的即时医疗设备。

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