نتایج جستجو برای: quantitative competitor pcr

تعداد نتایج: 463288  

2000
Heiko Wittor Hermann Leying Andreas Hochhaus Rob van Miltenburg

Literature indicates that in 95 % of all subjects with chronic myeloid leukemia (CML) and in 25-30 % of subjects with acute lymphoblastic leukemia (ALL) a reciprocal translocation between the long arms of chromosome 9 and chromosome 22 [t(9;22)] can be found. This translocation or the resulting fusion product can be detected by a number of techniques, including fluorescent in situ hybridization...

Journal: :Archivum immunologiae et therapiae experimentalis 2003
Simone Mocellin Carlo R Rossi Francesco M Marincola

In the era of the Human Genome Project, quantitation of gene expression by tumor/host cells is of paramount importance to investigate gene patterns responsible for cancer development, progression and response/resistance to treatment. Quantitative real-time PCR (qrt-PCR) technology has recently reached a level of sensitivity, accuracy and practical ease that support its use as a routine bioinstr...

Journal: :Journal of clinical microbiology 2003
Steven B Kleiboeker

Detection of RNA viruses by reverse transcription (RT)-PCR has proven to be a useful approach for the diagnosis of infections caused by many viral pathogens. However, adequate controls are required for each step of the RT-PCR protocol to ensure the accuracies of diagnostic test results. Heterologous competitor RNA can be used as a control for a number of different aspects of diagnostic RT-PCR. ...

Journal: :BioTechniques 1998
N D Borson M A Strausbauch P J Wettstein R P Oda S L Johnston J P Landers

Attempts are frequently made to semiquantitate mRNA as a means of circumventing the laborious and time-consuming process of quantitation that is inherent in the use of competitor templates. However, semiquantitative approaches present the risk of generating non-reproducible data due to tube-to-tube variability and/or misinterpretation of quantities of product being generated during the plateau ...

Journal: :CSH protocols 2006
Renée M Horner

INTRODUCTION The first step in competitive RT-PCR is the synthesis and purification of the synthetic competitor. This is an RNA molecule designed to be reverse-transcribed and PCR-amplified with the same efficiency as the endogenous transcript of interest. Once the competitor molecule has been prepared, as described in this protocol, competitive PCR can be carried out, as described in Comptetit...

Journal: :Journal of medical virology 1999
M Zerbini G Gallinella E Manaresi M Musiani G Gentilomi S Venturoli

To standardize a PCR assay for the detection of parvovirus B19 DNA in serum samples three different sample treatments were evaluated on the basis of the efficiency of recovery, reproducibility, convenience of sample handling, and presence of PCR inhibitors. Moreover, the presence of an internal standard competitor as the working reagent at one defined concentration in a competitive PCR-ELISA ha...

Journal: :CSH protocols 2006
Renée M Horner

INTRODUCTION In this protocol, sample and competitor RNAs (previously synthesized as described in Preparation of Competitor RNA for Competitive RT-PCR) are reverse transcribed (separately) in a pilot experiment. A constant amount of sample RT product is then combined with a 2-logserial dilution of competitor RT product for PCR. This procedure provides an approximate copy number for the sample, ...

Journal: :BioTechniques 2001
S Al-Robaiy S Rupf K Eschrich

A rapid competitive PCR method was developed to quantify DNA on the LightCycler. It rests on the quantitative information contained in the melting curves obtained after amplification in the presence of SYBR Green I. Specific hybridization probes are not required. Heterologous internal standards sharing the same primer binding sites and having different melting temperatures to the natural PCR pr...

Journal: :Electrophoresis 2006
Giovanni Dinelli Alessandra Bonetti Ilaria Marotti Maurizio Minelli Miguel Navarrete-Casas Antonio Segura-Carretero Alberto Fernández-Gutiérrez

The aim of the present study was to develop a quantitative-competitive PCR (QC-PCR) method to detect DNA from transgenic herbicide-resistant (roundup ready, RR) soybean and maize. Since no QC-PCR system for the quantification of RR maize had been published at the time of writing, a specific competitor DNA for transgenic event was developed. For the QC-PCR of RR-soybean, a commercially available...

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