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Microfluidic integrated multi-walled carbon nanotube (MWCNT) sensor for electrochemical nucleic acid concentration measurement

机译:微流集成多壁碳纳米管(MWCNT)传感器,用于电化学核酸浓度测量

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A microfluidic assisted electrochemical (EC) biosensing platform based on vertically aligned multi-walled carbon nanotubes (MWCNTs) embedded in SiO_2 was developed using multi-scale manufacturing techniques. The MWCNT-EC sensor was fabricated using electron beam (E-beam) nanolithography, thin-film metal deposition and reactive/electrochemical etching. The MWCNT-EC sensor was integrated with a microfluidic EC cartridge including the counter and reference electrodes and a PDMS microfluidic channel on a glass substrate. After packaging the MWCNT chip and microfluidic EC cartridge into a manifold which included sample inlet/outlet, electrical connectors and a miniaturized potentiostat, the platform was characterized with differential pulse voltammetry (DPV) using ferrocyanide and ruthenium(Ⅱ) solutions. The DPV measurement results are consistent with commercial EC systems. Microfluidic nucleic acid hybridization was demonstrated using the MWCNT chip on which the MWCNT tips were function-alized with single stranded DNA (ssDNA) probes. The synthetic complementary ssDNA targets were input through the microfluidic channel and hybridized with the functionalized ssDNA probes. The relative DPV peak magnitude linearly correlated with the target DNA concentration. This platform provides a simple way to integrate a MWCNT biosensor with microfluidics as an electronic system for a variety of possible nucleic acid analyses.
机译:利用多尺度制造技术,开发了一种基于垂直排列在SiO_2中的多壁碳纳米管(MWCNT)的微流辅助电化学(EC)生物传感平台。 MWCNT-EC传感器是使用电子束(E-beam)纳米光刻技术,薄膜金属沉积和反应/电化学蚀刻工艺制造的。 MWCNT-EC传感器与微流体EC盒集成在一起,该微盒包括对电极和参比电极以及位于玻璃基板上的PDMS微流体通道。将MWCNT芯片和微流控EC盒包装到包括样品入口/出口,电连接器和微型稳压器的歧管中后,使用亚铁氰化物和钌(Ⅱ)溶液通过差分脉冲伏安法(DPV)对平台进行了表征。 DPV测量结果与商业EC系统一致。使用MWCNT芯片证明了微流体核酸杂交,该芯片上的MWCNT尖端通过单链DNA(ssDNA)探针进行了功能化。合成的互补ssDNA靶标通过微流体通道输入,并与功能化的ssDNA探针杂交。 DPV的相对峰大小与目标DNA浓度线性相关。该平台提供了一种简单的方法,可将MWCNT生物传感器与微流体集成为电子系统,以进行各种可能的核酸分析。

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