KINETIC PCR ANALYSIS - REAL-TIME MONITORING OF DNA AMPLIFICATION REACTIONS

被引:1510
作者
HIGUCHI, R [1 ]
FOCKLER, C [1 ]
DOLLINGER, G [1 ]
WATSON, R [1 ]
机构
[1] CHIRON CORP,EMERYVILLE,CA 94608
来源
BIO-TECHNOLOGY | 1993年 / 11卷 / 09期
关键词
D O I
10.1038/nbt0993-1026
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
We describe a simple, quantitative assay for any amplifiable DNA sequence that uses a video camera to monitor multiple polymerase chain reactions (PCRs) simultaneously over the course of thermocycling. The video camera detects the accumulation of double-stranded DNA (dsDNA) in each PCR using the increase in the fluorescence of ethidium bromide (EtBr) that results from its binding duplex DNA. The kinetics of fluorescence accumulation during thermocycling are directly related to the starting number of DNA copies. The fewer cycles necessary to produce a detectable fluorescence, the greater the number of target sequences. Results obtained with this approach indicate that a kinetic approach to PCR analysis can quantitate DNA sensitively, selectively and over a large dynamic range. This approach also provides a means of determining the effect of different reaction conditions on the efficacy of the amplification and so can provide insight into fundamental PCR processes.
引用
收藏
页码:1026 / 1030
页数:5
相关论文
共 50 条
[31]   Real-time kinetic analysis of nuclease-DNA binding and cleavage [J].
Nolan, JP ;
Shen, B ;
Park, MS ;
Sklar, LA .
BIOPHYSICAL JOURNAL, 1997, 72 (02) :THAM7-THAM7
[32]   Monitoring herpesviruses DNA in three cases of acute retinal necrosis by real-time PCR [J].
Asano, S ;
Yoshikawa, T ;
Kimura, H ;
Enomoto, Y ;
Ohashi, M ;
Terasaki, H ;
Nishiyama, Y .
JOURNAL OF CLINICAL VIROLOGY, 2004, 29 (03) :206-209
[33]   ELECTROCHEMICAL REAL-TIME MONITORING OF ISOTHERMAL NUCLEIC ACID AMPLIFICATION FOR QUANTITATIVE ANALYSIS [J].
Tabata, M. ;
Yang, H. ;
Mannan, F. ;
Katayama, Y. ;
Goda, T. ;
Matsumoto, A. ;
Seichi, A. ;
Suzuki, K. ;
Miyahara, Y. .
2015 TRANSDUCERS - 2015 18TH INTERNATIONAL CONFERENCE ON SOLID-STATE SENSORS, ACTUATORS AND MICROSYSTEMS (TRANSDUCERS), 2015, :1553-1556
[34]   A Real-time Resistance Measurement for DNA Amplification and Detection [J].
Jiang, Dongneng ;
Xiang, Guiming ;
Wu, Jiehong ;
Liu, Chang ;
Liu, Fei ;
Pu, Xiaoyun .
INTERNATIONAL JOURNAL OF ELECTROCHEMICAL SCIENCE, 2012, 7 (06) :5273-5285
[35]   Electrochemical Real-Time DNA Amplification and Detection on a Microchip [J].
Huang, Tsung-Tao ;
Wang, Jun-Sheng ;
Tang, Yu-Hsiang ;
Chang, Chun-Ming .
2015 IEEE 10TH INTERNATIONAL CONFERENCE ON NANO/MICRO ENGINEERED AND MOLECULAR SYSTEMS (NEMS), 2015, :132-135
[36]   Monitoring of microbiological water quality by real-time PCR [J].
Zhou, W. ;
Kageyama, K. ;
Li, F. ;
Yuasa, A. .
ENVIRONMENTAL TECHNOLOGY, 2007, 28 (05) :545-553
[37]   Real-time PCR sensing by thermal conductivity monitoring [J].
Noh, Seungbeom ;
Lee, Jinsang ;
Shin, Jang-Kyoo ;
Lim, Geunbae .
ELECTROANALYSIS, 2006, 18 (19-20) :1989-1993
[38]   Performance of a real-time PCR method for engraftment monitoring [J].
McLaughlin, Ian J. ;
Bost, Douglas A. ;
Mountain, Joanna L. ;
Lazaruk, Kathy ;
Stein, Jason ;
McGinnis, Malcolm D. ;
Krausa, Pete .
HUMAN IMMUNOLOGY, 2007, 68 :S75-S75
[39]   Accuracy of real-time PCR and digital PCR for the monitoring of total HIV DNA under prolonged antiretroviral therapy [J].
Renault, Constance ;
Bollore, Karine ;
Pisoni, Amandine ;
Motto-Ros, Camille ;
Van de Perre, Philippe ;
Reynes, Jacques ;
Tuaillon, Edouard .
SCIENTIFIC REPORTS, 2022, 12 (01)
[40]   A rapid DNA extraction method for quantitative real-time PCR amplification from fresh water sediment [J].
Lu, Shimin ;
Liao, Mingjun ;
Zhang, Min ;
Qi, Pengzhi ;
Xie, Congxin ;
He, Xugang .
JOURNAL OF FOOD AGRICULTURE & ENVIRONMENT, 2012, 10 (3-4) :1252-1255