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多通道 PMMA 微流控生物传感器,具有集成的 IDUAs 用于电化学检测。

Multi-channel PMMA microfluidic biosensor with integrated IDUAs for electrochemical detection.

机构信息

School of Bioresources and Technology, King Mongkut's University of Technology Thonburi, Bangkhuntien, Bangkok, 10150, Thailand.

出版信息

Anal Bioanal Chem. 2013 Jul;405(18):5965-74. doi: 10.1007/s00216-013-7020-0. Epub 2013 May 17.

Abstract

A novel multi-channel poly(methyl methacrylate) (PMMA) microfluidic biosensor with interdigitated ultramicroelectrode arrays (IDUAs) for electrochemical detection was developed. The focus of the development was a simple fabrication procedure and the realization of a reliable large IDUA that can provide detection simultaneously to several microchannels. As proof of concept, five microchannels are positioned over a large single IDUA where the channels are parallel with the length of the electrode finger. The IDUAs were fabricated on the PMMA cover piece and bonded to a PMMA substrate containing the microfluidic channels using UV/ozone-assisted thermal bonding. Conditions of device fabrication were optimized realizing a rugged large IDUA within a bonded PMMA device. Gold adhesion to the PMMA, protective coatings, and pressure during bonding were optimized. Its electrochemical performance was studied using amperometric detection of potassium ferri and ferro hexacyanide. Cumulative signals within the same chip showed very good linearity over a range of 0-38 μM (R(2) = 0.98) and a limit of detection of 3.48 μM. The bonding of the device was optimized so that no cross talk between the channels was observed which otherwise would have resulted in unreliable electrochemical responses. The highly reproducible signals achieved were comparable to those obtained with separate single-channel devices. Subsequently, the multi-channel microfluidic chip was applied to a model bioanalytical detection strategy, i.e., the quantification of specific nucleic acid sequences using a sandwich approach. Here, probe-coated paramagnetic beads and probe-tagged liposomes entrapping ferri/ferro hexacyanide as the redox marker were used to bind to a single-stranded DNA sequence. Flow rates of the non-ionic detergent n-octyl-β-D-glucopyranoside for liposome lysis were optimized, and the detection of the target sequences was carried out coulometrically within 250 s and with a limit of detection of 12.5 μM. The robustness of the design and the reliability of the results obtained in comparison to previously published single-channel designs suggest that the multi-channel device offers an excellent opportunity for bioanalytical applications that require multianalyte detection and high-throughput assays.

摘要

一种新型的多通道聚甲基丙烯酸甲酯(PMMA)微流控生物传感器,带有叉指式超微电极阵列(IDUA),用于电化学检测。该传感器的设计重点是简化制造工艺,并实现可靠的大型 IDUA,以便能够同时对多个微通道进行检测。作为概念验证,五个微通道位于单个大型 IDUA 上方,这些通道与电极指的长度平行。IDUA 是在 PMMA 盖板上制造的,并使用 UV/臭氧辅助热键合与包含微流道的 PMMA 基底键合。通过优化器件制造条件,实现了坚固耐用的大型 IDUA,同时保证了键合 PMMA 器件的稳定性。优化了金对 PMMA 的附着力、保护层和键合过程中的压力。通过安培检测法检测铁氰化钾和亚铁氰化铁,研究了其电化学性能。在同一芯片内累积的信号在 0-38 μM 范围内表现出非常好的线性(R²=0.98),检测限为 3.48 μM。优化了器件的键合,避免了通道之间的串扰,否则会导致不可靠的电化学响应。所获得的高度可重复的信号与单独的单通道器件获得的信号相当。随后,将多通道微流控芯片应用于一种模型生物分析检测策略,即使用三明治方法定量特定的核酸序列。在此,使用带有探针的磁性珠和带有探针的脂质体(作为氧化还原标记物)来捕获单链 DNA 序列。优化了非离子型去污剂辛基-β-D-吡喃葡萄糖苷的流速以用于脂质体的裂解,并在 250 s 内通过库仑法检测目标序列,检测限为 12.5 μM。与之前发表的单通道设计相比,该设计的稳健性和结果的可靠性表明,多通道器件为需要多分析物检测和高通量检测的生物分析应用提供了极好的机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/64c1/3770862/51344c1ec7c7/nihms481603f1.jpg

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