Real-time PCR microfluidic devices with concurrent electrochemical detection


Autoria(s): Fang TH; Ramalingam N; Dong XD; Ngin TS; Zeng XT; Kuan ATL; Huat EYP; Gong HQ
Data(s)

2009

Resumo

Electrochemistry-based detection methods hold great potential towards development of hand-held nucleic-acid analyses instruments. In this work, we demonstrate the implementation of in situ electrochemical (EC) detection method in a microfluidic flow-through EC-qPCR (FTEC-qPCR) device, where both the amplification of the target nucleic-acid sequence and subsequent EC detection of the PCR amplicon are realized simultaneously at selected PCR cycles in the same device. The FTEC-qPCR device utilizes methylene blue (MB), an electroactive DNA intercalator, for electrochemical signal measurements in the presence of PCR reagent components. Our EC detection method is advantageous, when compared to other existing EC methods for PCR amplicon analysis, since FTEC-qPCR does not require probe-modified electrodes, or asymmetric PCR, or solid-phase PCR. Key technical issues related to surface passivation, electrochemical measurement, PCR inhibition by metal electrode, bubble-free PCR, were investigated. By controlling the concentration of MB and the exposure of PCR mixture to the bare metal electrode, we successfully demonstrated electrochemical measurement of MB in solution-phase, symmetric PCR by amplifying a fragment of lambda phage DNA.

Identificador

http://202.98.16.49/handle/322003/12909

http://www.irgrid.ac.cn/handle/1471x/148867

Idioma(s)

英语

Fonte

Fang TH;Ramalingam N;Dong XD;Ngin TS;Zeng XT;Kuan ATL;Huat EYP;Gong HQ.Real-time PCR microfluidic devices with concurrent electrochemical detection,BIOSENSORS & BIOELECTRONICS,2009,24(7 ):2131-2136

Palavras-Chave #METHYLENE-BLUE #DNA AMPLIFICATION #ELECTRODES #CHIP
Tipo

期刊论文