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Development and validation of a method for human papillomavirus genotyping based on molecular beacon probes
by
Lyu, Jiangfeng
, Zhou, Jing
, Yu, Yuefeng
, Pan, Caixia
, Ren, Xuyi
in
Assaying
/ Biology and life sciences
/ Cervical cancer
/ Cross-reactivity
/ Deoxyribonucleic acid
/ Development and progression
/ Diagnosis
/ Diagnostic systems
/ DNA
/ DNA probes
/ DNA Probes, HPV - genetics
/ Genital tract
/ Genotype
/ Genotypes
/ Genotyping
/ Genotyping Techniques - methods
/ Human papillomavirus
/ Human Papillomavirus DNA Tests - methods
/ Humans
/ Immunization
/ Medical laboratories
/ Medical screening
/ Medicine and Health Sciences
/ Melting curve
/ Methods
/ Molecular Diagnostic Techniques - methods
/ Papillomaviridae - genetics
/ Papillomaviridae - pathogenicity
/ Papillomavirus
/ Papillomavirus infections
/ Papillomavirus Infections - diagnosis
/ Papillomavirus Infections - genetics
/ Pathogenic microorganisms
/ Physical Sciences
/ Polymerase Chain Reaction
/ R&D
/ Research & development
/ Research and Analysis Methods
/ Risk factors
/ Sensitivity analysis
/ Sensitivity and Specificity
/ Tubes
/ Vaccines
2018
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Development and validation of a method for human papillomavirus genotyping based on molecular beacon probes
by
Lyu, Jiangfeng
, Zhou, Jing
, Yu, Yuefeng
, Pan, Caixia
, Ren, Xuyi
in
Assaying
/ Biology and life sciences
/ Cervical cancer
/ Cross-reactivity
/ Deoxyribonucleic acid
/ Development and progression
/ Diagnosis
/ Diagnostic systems
/ DNA
/ DNA probes
/ DNA Probes, HPV - genetics
/ Genital tract
/ Genotype
/ Genotypes
/ Genotyping
/ Genotyping Techniques - methods
/ Human papillomavirus
/ Human Papillomavirus DNA Tests - methods
/ Humans
/ Immunization
/ Medical laboratories
/ Medical screening
/ Medicine and Health Sciences
/ Melting curve
/ Methods
/ Molecular Diagnostic Techniques - methods
/ Papillomaviridae - genetics
/ Papillomaviridae - pathogenicity
/ Papillomavirus
/ Papillomavirus infections
/ Papillomavirus Infections - diagnosis
/ Papillomavirus Infections - genetics
/ Pathogenic microorganisms
/ Physical Sciences
/ Polymerase Chain Reaction
/ R&D
/ Research & development
/ Research and Analysis Methods
/ Risk factors
/ Sensitivity analysis
/ Sensitivity and Specificity
/ Tubes
/ Vaccines
2018
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Development and validation of a method for human papillomavirus genotyping based on molecular beacon probes
by
Lyu, Jiangfeng
, Zhou, Jing
, Yu, Yuefeng
, Pan, Caixia
, Ren, Xuyi
in
Assaying
/ Biology and life sciences
/ Cervical cancer
/ Cross-reactivity
/ Deoxyribonucleic acid
/ Development and progression
/ Diagnosis
/ Diagnostic systems
/ DNA
/ DNA probes
/ DNA Probes, HPV - genetics
/ Genital tract
/ Genotype
/ Genotypes
/ Genotyping
/ Genotyping Techniques - methods
/ Human papillomavirus
/ Human Papillomavirus DNA Tests - methods
/ Humans
/ Immunization
/ Medical laboratories
/ Medical screening
/ Medicine and Health Sciences
/ Melting curve
/ Methods
/ Molecular Diagnostic Techniques - methods
/ Papillomaviridae - genetics
/ Papillomaviridae - pathogenicity
/ Papillomavirus
/ Papillomavirus infections
/ Papillomavirus Infections - diagnosis
/ Papillomavirus Infections - genetics
/ Pathogenic microorganisms
/ Physical Sciences
/ Polymerase Chain Reaction
/ R&D
/ Research & development
/ Research and Analysis Methods
/ Risk factors
/ Sensitivity analysis
/ Sensitivity and Specificity
/ Tubes
/ Vaccines
2018
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Development and validation of a method for human papillomavirus genotyping based on molecular beacon probes
Journal Article
Development and validation of a method for human papillomavirus genotyping based on molecular beacon probes
2018
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Overview
We describe a new assaying system for the detection and genotyping of human papillomavirus (HPV) based on linear-after-the-exponential-PCR(LATE-PCR) and melting curve analysis. The 23 most prevalent HPV strains (types 6, 11, 16, 18, 31, 33, 35, 39, 42, 45, 51, 52, 53, 56, 58, 59, 66, 68, 70, 73, 81, 82, and 83) are assayed in two sealed reaction tubes within 2 h. Good sensitivity and specificity was evaluated by testing cloned HPV DNA and clinical samples. The detection limit was 5-500 copies/reaction depending on the genotype. No cross-reactivity was observed with the other HPV types that are not covered by our method or pathogens tested which were commonly found in female genital tract. When compared with the HPV GenoArray Diagnostic kit, the results from 1104 clinical samples suggest good overall agreement between the two methods,(98.37%, 95% CI: 97.44%-98.97%) and the kappa value was 0.954. Overall, this new HPV genotyping assay system presents a simple, rapid, universally applicable, sensitive, and highly specific detection methodology that should be useful for HPV detection and genotyping, therefore, is potentially of great value in clinical application.
Publisher
Public Library of Science,Public Library of Science (PLoS)
Subject
/ DNA
/ Genotype
/ Genotyping Techniques - methods
/ Human Papillomavirus DNA Tests - methods
/ Humans
/ Medicine and Health Sciences
/ Methods
/ Molecular Diagnostic Techniques - methods
/ Papillomaviridae - pathogenicity
/ Papillomavirus Infections - diagnosis
/ Papillomavirus Infections - genetics
/ R&D
/ Research and Analysis Methods
/ Tubes
/ Vaccines
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