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基于夹式盒组装光热生物传感盘的免疫分析信号的多重三模式可视化输出。

Multiplexed tri-mode visual outputs of immunoassay signals on a clip-magazine-assembled photothermal biosensing disk.

机构信息

Biomedical Engineering Research Center, Medical School of Ningbo University, Ningbo, Zhejiang, 315211, PR China.

Department of Chemistry and Biochemistry, University of Texas at El Paso, 500 West University Avenue, El Paso, Texas, 79968, United States.

出版信息

Biosens Bioelectron. 2020 Dec 15;170:112646. doi: 10.1016/j.bios.2020.112646. Epub 2020 Oct 1.

Abstract

The photothermal biosensing principle is of increasing interest for point-of-care detection, but has rarely been applied in portable analytical devices in a lab-on-a-chip format. Herein, a photothermally responsive poly (methyl methacrylate) (PMMA)/paper hybrid disk (PT-Disk) was developed as a novel photothermal immunoassay device with the integration of a clip-magazine-assembled photothermal biosensing strategy. The PT-Disk consisted of a dissociative thermoresponsive hydrogel-loaded clip unit where the sandwich-type immunoreaction with an iron oxide-to-Prussian blue nanoparticle (PB NP) conversion took place and a magazine bearer for the rotational clip assembly and visual signal outputs. Upon laser irradiation of the clip-magazine-assembled PT-Disk, on-chip photothermal effect of PB NPs triggered both dose-dependent temperature elevation and the subsequent release of dye solutions from the central clip unit to surrounding magazine-bearing paper channels as the result of phase transition of the hydrogels, realizing multiplexed thermal image- and distance-based visual quantitative signal outputs in combination with the preliminary colorimetric readout on the PT-Disk. Using the multiplexed tri-mode signal outputs, the PT-Disk can quantify prostate specific antigen with limits of detection of 1.4-2.8 ng mL. This is the first attempt to apply the photothermal biosensing principle in portable PMMA/paper-based analytical devices, which offers not only versatile on-chip visual quantitative signal outputs, but also the implementation of the photothermal biosensing principle in a lab-on-a-chip format.

摘要

光热生物传感原理越来越受到即时检测的关注,但在片上实验室形式的便携式分析设备中很少应用。在此,我们开发了一种光热响应的聚甲基丙烯酸甲酯(PMMA)/纸混合盘(PT-Disk),作为一种新型光热免疫分析装置,集成了夹式杂志组装的光热生物传感策略。PT-Disk 由一个分离的热响应水凝胶负载的夹单元组成,其中发生了夹心型免疫反应,以及铁氧化物到普鲁士蓝纳米颗粒(PB NP)的转换,还有一个杂志承载器用于旋转夹组件和视觉信号输出。当对夹式杂志组装的 PT-Disk 进行激光照射时,PB NPs 的片上光热效应引发了剂量依赖性的温度升高,以及水凝胶相转变导致的染料溶液从中部夹单元向周围杂志承载纸通道的释放,从而实现了基于热图像和距离的多重可视化定量信号输出,并结合了初步的比色读数。利用多重三模式信号输出,可以定量检测前列腺特异性抗原,其检测限为 1.4-2.8ng mL。这是首次尝试将光热生物传感原理应用于便携式 PMMA/基于纸的分析设备,不仅提供了多功能的片上可视化定量信号输出,而且还实现了光热生物传感原理在片上实验室形式的应用。

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