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基于电阻抗、折射测定法、光吸收和荧光的多因素分析混合微流控平台

Hybrid Microfluidic Platform for Multifactorial Analysis Based on Electrical Impedance, Refractometry, Optical Absorption and Fluorescence.

作者信息

Pereira Fábio M, Bernacka-Wojcik Iwona, Ribeiro Rita S Rodrigues, Lobato Maria Teresa, Fortunato Elvira, Martins Rodrigo, Igreja Rui, Jorge Pedro A S, Águas Hugo, Oliva Abel Martin Gonzalez

机构信息

CENIMAT/I3N, Department of Materials Science, Faculty of Science and Technology, New University of Lisbon and CEMOP/UNINOVA, 2829-516 Caparica, Portugal.

Instituto de Tecnologia Química e Biológica Antonio Xavier, Universidade Nova de Lisboa, Avenida da Republica, 2780-157 Oeiras, Portugal.

出版信息

Micromachines (Basel). 2016 Oct 7;7(10):181. doi: 10.3390/mi7100181.

Abstract

This paper describes the development of a novel microfluidic platform for multifactorial analysis integrating four label-free detection methods: electrical impedance, refractometry, optical absorption and fluorescence. We present the rationale for the design and the details of the microfabrication of this multifactorial hybrid microfluidic chip. The structure of the platform consists of a three-dimensionally patterned polydimethylsiloxane top part attached to a bottom SU-8 epoxy-based negative photoresist part, where microelectrodes and optical fibers are incorporated to enable impedance and optical analysis. As a proof of concept, the chip functions have been tested and explored, enabling a diversity of applications: (i) impedance-based identification of the size of micro beads, as well as counting and distinguishing of erythrocytes by their volume or membrane properties; (ii) simultaneous determination of the refractive index and optical absorption properties of solutions; and (iii) fluorescence-based bead counting.

摘要

本文描述了一种用于多因素分析的新型微流控平台的开发,该平台集成了四种无标记检测方法:电阻抗、折射测量、光吸收和荧光。我们阐述了该设计的基本原理以及这种多因素混合微流控芯片的微加工细节。该平台的结构由一个三维图案化的聚二甲基硅氧烷顶部部件连接到底部基于SU-8环氧的负性光刻胶部件组成,其中集成了微电极和光纤以实现阻抗和光学分析。作为概念验证,已对芯片功能进行了测试和探索,实现了多种应用:(i)基于阻抗识别微珠大小,以及通过红细胞体积或膜特性对其进行计数和区分;(ii)同时测定溶液的折射率和光吸收特性;(iii)基于荧光的微珠计数。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/61fd/6190102/2cff12d9e0a6/micromachines-07-00181-g001.jpg

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