Continuous-flow DNA and RNA amplification chip combined with laser-induced fluorescence detection

被引:67
作者
Obeid, PJ
Christopoulos, TK [1 ]
机构
[1] Univ Patras, Dept Chem, GR-26500 Patras, Greece
[2] Inst Chem Engn & High Temp Chem Proc, ICEHT, GR-26500 Patras, Greece
关键词
miniaturization; PCR; RT-PCR; chip; microfluidic device; DNA amplification; RNA amplification; continuous-flow; laser-induced fluorescence;
D O I
10.1016/S0003-2670(03)00898-5
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
DNA and RNA amplification, through polymerase chain reaction (PCR) and reverse transcriptase-polymerase chain reaction (RT-PCR) are essential steps in most procedures of nucleic acid analysis. Microfabricated devices (chips) for continuous-flow PCR and/or RT-PCR provide very rapid thermal energy transfer and cycling compared to conventional PCR systems. However, time-consuming slab gel electrophoresis has been used for analysis of the amplified fragments obtained from the flow-through chips. In order to facilitate high throughput and automation, we have combined the advantages of continuous-flow DNA and RNA amplification chip with an in-house built laser-induced fluorescence (LIF) detection system that allows analysis of amplification products within seconds. Upon exiting from the chip, the products are mixed with the intercalating dye SYBR Green I (SGI) and introduced into the LIF system. The fluorescence is linearly related to the DNA concentration in the range of 0.025-30 mg/l. The CVs of the LIF measurements range from 0.9 to 12.7%. We studied the effect of the number of amplification cycles on the fluorescence. The fluorescence was also studied as a function of the input DNA molecules in the range of 1.56 x 10(5)-4 x 10(7). The reproducibility of the entire process including continuous-flow amplification on the chip and LIF detection was 18%. No sample carry-over was observed in the chip or the LIF detector. (C) 2003 Elsevier B.V. All rights reserved.
引用
收藏
页码:1 / 9
页数:9
相关论文
共 30 条
[1]   Micro total analysis systems. 2. Analytical standard operations and applications [J].
Auroux, PA ;
Iossifidis, D ;
Reyes, DR ;
Manz, A .
ANALYTICAL CHEMISTRY, 2002, 74 (12) :2637-2652
[2]  
Bernard PS, 2002, CLIN CHEM, V48, P1178
[3]  
Christopoulos TK, 1999, ANAL CHEM, V71, p425R
[4]  
CHRISTOPOULOS TK, 2000, ENCY ANAL CHEM, P5159
[5]   Determination of prostate specific antigen mRNA in peripheral blood by reverse transcriptase polymerase chain reaction and a simple chemiluminometric hybridization assay in a high-throughput format [J].
Emmanouilidou, E ;
Ioannou, PC ;
Christopoulos, TK ;
Polizois, K .
ANALYTICAL BIOCHEMISTRY, 2003, 313 (01) :97-105
[6]   Polymerase chain reaction in polymeric microchips:: DNA amplification in less than 240 seconds [J].
Giordano, BC ;
Ferrance, J ;
Swedberg, S ;
Hühmer, AFR ;
Landers, JP .
ANALYTICAL BIOCHEMISTRY, 2001, 291 (01) :124-132
[7]  
Haughland R.P., 2002, Handbook of Fluorescent Probes and Research Products, VNinth
[8]   Evaluation of a homemade SYBR® Green I reaction mixture for real-time PCR quantification of gene expression [J].
Karsai, A ;
Müller, S ;
Platz, S ;
Hauser, MT .
BIOTECHNIQUES, 2002, 32 (04) :790-+
[9]   Chemical amplification: Continuous-flow PCR on a chip [J].
Kopp, MU ;
de Mello, AJ ;
Manz, A .
SCIENCE, 1998, 280 (5366) :1046-1048
[10]  
Lay MJ, 1997, CLIN CHEM, V43, P2262