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免清洗智能手机集成光学生物传感器的应用:基于反射微球。

Wash-free operation of smartphone-integrated optical immunosensor using retroreflective microparticles.

机构信息

Department of Molecular Science & Technology, Ajou University, Suwon, 16499, Republic of Korea.

Department of Molecular Science & Technology, Ajou University, Suwon, 16499, Republic of Korea.

出版信息

Biosens Bioelectron. 2022 Jan 15;196:113722. doi: 10.1016/j.bios.2021.113722. Epub 2021 Oct 21.

Abstract

Herein, we introduce a smartphone-integrated immunosensor based on non-spectroscopic optical detection. Sedimentation of the retroreflector and gentle inversion of the microfluidic chip was chosen as biosensing principles to ensure minimal human involvement. To realize this, wash-free immunosensing was implemented on a polymeric microfluidic chip device fabricated for light signal penetration in retroreflection signal acquisition. Applying a transparent chip and passive modulation of retroreflectors enabled the minimization of human error during sensing. In addition, a retroreflection-detectable optical gadget was constructed for integration with the commercial smartphone. The gadget had an optical chamber that induced retroreflection by integration with a smartphone. When the micro-sized reflector, named the retroreflective Janus microparticle, reacted on the sensing surface, the incident light was retroreflected towards the image sensor and quantified by a smartphone-installed Android application package. The developed application package features include time-lapse image capture performed by manipulating LED flash and camera modules, and quantification of retroreflected signal counts by image processing of time-lapse images. With this platform, the user could independently commence optical signal processing without a complicated optical setup and running software on a PC, and sensitive and reproducible immunosensing results could be obtained. The applicability test for creatine kinase-myocardial band detection from the buffer to serum was conducted and presented a calibration curve of 0-1000 ng/mL within 1 h. With the developed system, we believe that the applicability of the platform in bioanalytical detection can be expanded.

摘要

在此,我们介绍了一种基于非光谱光学检测的智能手机集成免疫传感器。选择沉降反射器和微流控芯片的温和倒置作为生物传感原理,以确保最小的人为干预。为了实现这一点,在用于反向反射信号采集的光信号穿透的聚合物微流控芯片装置上实现了免洗免疫传感。应用透明芯片和对反射器的被动调制可最大限度地减少传感过程中的人为错误。此外,还构建了一个用于与商业智能手机集成的反向反射可检测光学小工具。该小工具具有光学腔,通过与智能手机集成来诱导反向反射。当微尺寸的反射器,称为反向反射性 Janus 微粒子,在传感表面上反应时,入射光被反向反射到图像传感器,并通过智能手机安装的 Android 应用程序包进行定量。开发的应用程序包功能包括通过操纵 LED 闪光灯和相机模块进行延时图像捕获,以及通过对延时图像进行图像处理来定量反向反射信号计数。使用此平台,用户可以独立开始光学信号处理,而无需复杂的光学设置和在 PC 上运行软件,并且可以获得敏感且可重复的免疫传感结果。从缓冲液到血清的肌酸激酶-心肌带检测的适用性测试,并在 1 小时内呈现出 0-1000ng/mL 的校准曲线。通过开发的系统,我们相信可以扩展该平台在生物分析检测中的适用性。

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