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利用基于介电电泳的数字微流控技术对生物芯片进行功能化,用于表面等离子体共振成像检测DNA杂交。

Biochip functionalization using electrowetting-on-dielectric digital microfluidics for surface plasmon resonance imaging detection of DNA hybridization.

作者信息

Malic Lidija, Veres Teodor, Tabrizian Maryam

机构信息

Biomedical Engineering Department, Montreal, QC, Canada, H3A 2B4.

出版信息

Biosens Bioelectron. 2009 Mar 15;24(7):2218-24. doi: 10.1016/j.bios.2008.11.031. Epub 2008 Dec 13.

DOI:10.1016/j.bios.2008.11.031
PMID:19136248
Abstract

This work reports on a dynamically configurable micro-array surface plasmon resonance biochip platform. The platform comprises a digital electrowetting-on-dielectric (EWOD) microfluidic device tailored to surface plasmon resonance imaging (SPRi). We demonstrate its application for simultaneous immobilization of different DNA probes at the designated detection sites on-chip from sub-microL volume solutions in combination with multichannel label-free real-time detection of subsequent hybridization reactions. Successful on-chip DNA probe dilution and immobilization is also demonstrated using SPRi hybridization detection. Furthermore, active control of the immobilized probe density and orientation is achieved under an applied potential using the electric interface of the EWOD device. For low probe densities, under negative applied potential, the DNA hybridization efficiency is enhanced compared to passive probe immobilization, yielding a two-fold SPR signal increase within only 8min of hybridization. EWOD microfluidic platform coupled with SPRi promises to dramatically increase the speed of detection and quantification of biomolecular interactions while reducing reagent consumption. The proposed system would enable the development of high-throughput, rapid and ultrasensitive detection of biomolecules beyond DNA microarray applications.

摘要

本文报道了一种动态可配置的微阵列表面等离子体共振生物芯片平台。该平台包括一个为表面等离子体共振成像(SPRi)量身定制的数字介电电泳(EWOD)微流控装置。我们展示了其在将不同DNA探针从亚微升体积溶液中同时固定在芯片上指定检测位点的应用,以及随后对杂交反应的多通道无标记实时检测。利用SPRi杂交检测也成功证明了芯片上DNA探针的稀释和固定。此外,通过EWOD装置的电接口,在施加电势的情况下实现了对固定探针密度和取向的主动控制。对于低探针密度,在施加负电势时,与被动探针固定相比,DNA杂交效率得到提高,在仅8分钟的杂交时间内SPR信号增加了两倍。EWOD微流控平台与SPRi相结合,有望显著提高生物分子相互作用检测和定量的速度,同时减少试剂消耗。所提出的系统将能够开发出超越DNA微阵列应用的高通量、快速和超灵敏的生物分子检测方法。

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