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使用智能手机进行无标记生物检测。

Label-free biodetection using a smartphone.

机构信息

Department of Electrical and Computer Engineering, Micro and Nanotechnology Laboratory, University of Illinois at Urbana-Champaign, 208 North Wright Street, Urbana, IL 61801, USA.

出版信息

Lab Chip. 2013 Jun 7;13(11):2124-32. doi: 10.1039/c3lc40991k.

Abstract

Utilizing its integrated camera as a spectrometer, we demonstrate the use of a smartphone as the detection instrument for a label-free photonic crystal biosensor. A custom-designed cradle holds the smartphone in fixed alignment with optical components, allowing for accurate and repeatable measurements of shifts in the resonant wavelength of the sensor. Externally provided broadband light incident upon an entrance pinhole is subsequently collimated and linearly polarized before passing through the biosensor, which resonantly reflects only a narrow band of wavelengths. A diffraction grating spreads the remaining wavelengths over the camera's pixels to display a high resolution transmission spectrum. The photonic crystal biosensor is fabricated on a plastic substrate and attached to a standard glass microscope slide that can easily be removed and replaced within the optical path. A custom software app was developed to convert the camera images into the photonic crystal transmission spectrum in the visible wavelength range, including curve-fitting analysis that computes the photonic crystal resonant wavelength with 0.009 nm accuracy. We demonstrate the functionality of the system through detection of an immobilized protein monolayer, and selective detection of concentration-dependent antibody binding to a functionalized photonic crystal. We envision the capability for an inexpensive, handheld biosensor instrument with web connectivity to enable point-of-care sensing in environments that have not been practical previously.

摘要

利用其集成的摄像头作为光谱仪,我们展示了如何将智能手机用作无标记光子晶体生物传感器的检测仪器。一个定制的支架将智能手机固定在与光学元件对准的位置,从而可以对传感器的共振波长的移动进行准确且可重复的测量。外部提供的宽带光入射到入口小孔上,然后经过准直和线性偏振,然后通过仅共振反射窄带波长的生物传感器。衍射光栅将其余波长散布在相机的像素上,以显示高分辨率的传输光谱。光子晶体生物传感器在塑料基板上制造,并附着在标准的玻璃显微镜载玻片上,该载玻片可以轻松地在光路中移除和更换。开发了一个自定义软件应用程序,将相机图像转换为可见波长范围内的光子晶体传输光谱,包括曲线拟合分析,该分析可以以 0.009nm 的精度计算光子晶体共振波长。我们通过检测固定化的蛋白质单层来演示系统的功能,并选择性地检测到与功能化光子晶体结合的浓度依赖性抗体。我们设想了一种具有成本效益的,手持式生物传感器仪器的功能,该仪器具有网络连接功能,可实现以前在实际环境中无法实现的即时感测。

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