Literature DB >> 17720894

Unlabeled probes for the detection and typing of herpes simplex virus.

Shale Dames1, David C Pattison, L Kathryn Bromley, Carl T Wittwer, Karl V Voelkerding.   

Abstract

BACKGROUND: Unlabeled probe detection with a double-stranded DNA (dsDNA) binding dye is one method to detect and confirm target amplification after PCR. Unlabeled probes and amplicon melting have been used to detect small deletions and single-nucleotide polymorphisms in assays where template is in abundance. Unlabeled probes have not been applied to low-level target detection, however.
METHODS: Herpes simplex virus (HSV) was chosen as a model to compare the unlabeled probe method to an in-house reference assay using dual-labeled, minor groove binding probes. A saturating dsDNA dye (LCGreen Plus) was used for real-time PCR. HSV-1, HSV-2, and an internal control were differentiated by PCR amplicon and unlabeled probe melting analysis after PCR.
RESULTS: The unlabeled probe technique displayed 98% concordance with the reference assay for the detection of HSV from a variety of archived clinical samples (n = 182). HSV typing using unlabeled probes was 99% concordant (n = 104) to sequenced clinical samples and allowed for the detection of sequence polymorphisms in the amplicon and under the probe.
CONCLUSIONS: Unlabeled probes and amplicon melting can be used to detect and genotype as few as 10 copies of target per reaction, restricted only by stochastic limitations. The use of unlabeled probes provides an attractive alternative to conventional fluorescence-labeled, probe-based assays for genotyping and detection of HSV and might be useful for other low-copy targets where typing is informative.

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Year:  2007        PMID: 17720894     DOI: 10.1373/clinchem.2007.090761

Source DB:  PubMed          Journal:  Clin Chem        ISSN: 0009-9147            Impact factor:   8.327


  8 in total

1.  LightCycler technology in molecular diagnostics.

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2.  Genotyping of frequent BRCA1/2 SNPs with unlabeled probes: a supplement to HRMCA mutation scanning, allowing the strong reduction of sequencing burden.

Authors:  Kim De Leeneer; Ilse Coene; Bruce Poppe; Anne De Paepe; Kathleen Claes
Journal:  J Mol Diagn       Date:  2009-07-30       Impact factor: 5.568

Review 3.  High resolution melting applications for clinical laboratory medicine.

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4.  Detection of Two Drug-Resistance Mutants of the Cytomegalovirus by High-Resolution Melting Analysis.

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5.  Rapid detection and identification of Aspergillus from lower respiratory tract specimens by use of a combined probe-high-resolution melting analysis.

Authors:  María Alonso; Pilar Escribano; Jesus Guinea; Sandra Recio; Ainhoa Simon; Teresa Peláez; Emilio Bouza; Darío García de Viedma
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6.  High-resolution melting approach to efficient identification and quantification of H275Y mutant influenza H1N1/2009 virus in mixed-virus-population samples.

Authors:  Hong Kai Lee; Chun Kiat Lee; Tze Ping Loh; Julian Wei-Tze Tang; Paul Anantharajah Tambyah; Evelyn Siew-Chuan Koay
Journal:  J Clin Microbiol       Date:  2011-08-24       Impact factor: 5.948

7.  Development of a cost-effective method for capripoxvirus genotyping using snapback primer and dsDNA intercalating dye.

Authors:  Esayas Gelaye; Charles Euloge Lamien; Roland Silber; Eeva S M Tuppurainen; Reingard Grabherr; Adama Diallo
Journal:  PLoS One       Date:  2013-10-07       Impact factor: 3.240

8.  High-resolution melting molecular signatures for rapid identification of human papillomavirus genotypes.

Authors:  Ta-Hsien Lee; Tzong-Shoon Wu; Ching-Ping Tseng; Jiantai Timothy Qiu
Journal:  PLoS One       Date:  2012-08-20       Impact factor: 3.240

  8 in total

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