Twenty-Five Years of Quantitative PCR for Gene Expression Analysis

Двадцать пять лет количественной ПЦР для анализа экспрессии генов
Willard M. Freeman, Heather D. VanGuilder, Kent E. Vrana
2008-04-01

endogenous controlsfluorescent reporter technologiesgene expression analysisreal-time qPCRreverse-transcription quantitative PCR
Following its invention 25 years ago, PCR has been adapted for numerous molecular biology applications. Gene expression analysis by reverse-transcription quantitative PCR (RT-qPCR) has been a key enabling technology of the post-genome era. Since the founding of BioTechniques, this journal has been a resource for the improvements in qPCR technology, experimental design, and data analysis. qPCR and, more specifically, real-time qPCR has become a routine and robust approach for measuring the expression of genes of interest, validating microarray experiments, and monitoring biomarkers. The use of real-time qPCR has nearly supplanted other approaches (e.g., Northern blotting, RNase protection assays). This review examines the current state of qPCR for gene expression analysis now that the method has reached a mature stage of development and implementation. Specifically, the different fluorescent reporter technologies of real-time qPCR are discussed as well as the selection of endogenous controls. The conceptual framework for data analysis methods is also presented to demystify these analysis techniques. The future of qPCR remains bright as the technology becomes more rapid, cost-effective, easier to use, and capable of higher throughput.
1
Real-time qPCR has become a routine, robust approach for measuring gene expression, validating microarrays, and monitoring biomarkers.
2
Real-time qPCR use has nearly supplanted older methods such as Northern blotting and RNase protection assays for gene expression analysis.
3
Reverse-transcription quantitative PCR (RT-qPCR) has been a key enabling technology for gene expression analysis during the post-genome era.
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The review summarizes different fluorescent reporter technologies and guidance on selecting endogenous controls for real-time qPCR.
5
qPCR technology continues to improve, becoming more rapid, cost-effective, easier to use, and higher throughput.

Reverse-transcription quantitative PCR (RT-qPCR) for gene expression analysis

Current state, technologies, experimental design, endogenous control selection, and data analysis methods of real-time qPCR as applied to measuring gene expression

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2008-04-01
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Willard M. Freeman
Heather D. VanGuilder
Kent E. Vrana
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