Quantification of mRNA using real-time reverse transcription PCR (RT-PCR): trends and problems
Количественное определение мРНК с использованием полимеразной цепной реакции с обратной транскрипцией в режиме реального времени (ОТ-ПЦР): тенденции и проблемы
2002-08-01
SCID: 54.1/fwu6xvp6
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fluorescence-based PCRmRNA quantificationreagent and operator variabilityreal-time reverse transcription PCRsteady-state mRNA levels
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Abstract (AI)
The fluorescence-based real-time reverse transcription PCR (RT-PCR) is widely used for the quantification of steady-state mRNA levels and is a critical tool for basic research, molecular medicine and biotechnology. Assays are easy to perform, capable of high throughput, and can combine high sensitivity with reliable specificity. The technology is evolving rapidly with the introduction of new enzymes, chemistries and instrumentation. However, while real-time RT-PCR addresses many of the difficulties inherent in conventional RT-PCR, it has become increasingly clear that it engenders new problems that require urgent attention. Therefore, in addition to providing a snapshot of the state-of-the-art in real-time RT-PCR, this review has an additional aim: it will describe and discuss critically some of the problems associated with interpreting results that are numerical and lend themselves to statistical analysis, yet whose accuracy is significantly affected by reagent and operator variability.
Key Findings
1
Although real-time RT-PCR overcomes several limitations of conventional RT-PCR, it introduces new methodological and interpretive problems.
2
Fluorescence-based real-time RT-PCR enables sensitive, specific, high-throughput quantification of steady-state mRNA levels.
3
Numerical RT-PCR results can appear suitable for statistical analysis while their accuracy is substantially affected by reagent and operator variability.
4
The review critically evaluates current real-time RT-PCR practices and highlights the need for greater attention to sources of measurement error.
5
The technology is rapidly evolving through new enzymes, chemistries, and instrumentation, expanding its capabilities for research, medicine, and biotechnology.
Research Object
Fluorescence-based real-time reverse transcription PCR (real-time RT-PCR) assays for quantifying steady-state mRNA levels
Research Subject
the accuracy, interpretation, and sources of variability in numerical mRNA quantification results, including reagent and operator effects
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2002-08-01
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