High-throughput detection, genotyping and quantification of the human papillomavirus using real-time PCR

Author(s):  
Isabel M. Micalessi ◽  
Gaëlle A.V. Boulet ◽  
Johannes J. Bogers ◽  
Ina H. Benoy ◽  
Christophe E. Depuydt

AbstractThe establishment of the causal relationship between high-risk human papillomavirus (HR-HPV) infection and cervical cancer and its precursors has resulted in the development of HPV DNA detection systems. Currently, real-time PCR assays for the detection of HPV, such as the RealTime High Risk (HR) HPV assay (Abbott) and the cobas® 4800 HPV Test (Roche Molecular Diagnostics) are commercially available. However, none of them enables the detection and typing of all HR-HPV types in a clinical high-throughput setting. This paper describes the laboratory workflow and the validation of a type-specific real-time quantitative PCR (qPCR) assay for high-throughput HPV detection, genotyping and quantification. This assay is routinely applied in a liquid-based cytology screening setting (700 samples in 24 h) and was used in many epidemiological and clinical studies.The TaqMan-based qPCR assay enables the detection of 17 HPV genotypes and β-globin in seven multiplex reactions. These HPV types include all 12 high-risk types (HPV16, 18, 31, 33, 35, 39, 45, 51, 52, 56, 58, 59), three probably high-risk types (HPV53, 66 and 68), one low-risk type (HPV6) and one undetermined risk type (HPV67).An analytical sensitivity of ≤100 copies was obtained for all the HPV types. The analytical specificity of each primer pair was 100% and an intra- and inter-run variability of <6.4% was observed.The type-specific real-time PCR approach enables detection of 17 HPV types, identification of the HPV type and determination of the viral load in a single sensitive assay suitable for high-throughput screening.

2017 ◽  
pp. 99-103
Author(s):  
Van Bao Thang Phan ◽  
Hoang Bach Nguyen ◽  
Van Thanh Nguyen ◽  
Thi Nhu Hoa Tran ◽  
Viet Quynh Tram Ngo

Introduction: Infection with HPV is the main cause of cervical cancer. Determining HPV infection and the types of HPV plays an important role in diagnosis, treatment and prognosis of cervicitis/cervical cancer. Aims: Determining proportion of high-risk HPV types and the occurrence of coinfection with multiple HPV types. Methods: 177 women with cervicitis or abnormal Pap smear result were enrolled in the study. Performing the real-time PCR for detecting HPV and the reverse DOT-BLOT assay for determining type of HPV in cases of positive PCR. Results: 7 types of high-risk HPV was dectected, the majority of these types were HPV type 18 (74.6%) and HPV type 16 (37.6%); the proportion of infection with only one type of HPV was 30.4% and coinfection with multiple HPV types was higher (69.6%), the coinfected cases with 2 and 3 types were dominated (32.2% and 20.3%, respectively) and the coinfected cases with 4 and 5 types were rare. Conclusion: Use of the real-time PCR and reverse DOT-BLOT assay can determine the high-risk HPV types and the occurrence of coinfection with multiple HPV types. Key words: HPV type, Reverse DOT-BLOT, real-time PCR,PCR, cervical cancer


2014 ◽  
Vol 52 (3) ◽  
pp. 890-896 ◽  
Author(s):  
A. T. Hesselink ◽  
J. Berkhof ◽  
M. L. van der Salm ◽  
A. P. van Splunter ◽  
T. H. Geelen ◽  
...  

Author(s):  
Andrejs Lifšics ◽  
Maksims Čistjakovs ◽  
Valērija Groma ◽  
Modra Murovska

AbstractThe incidence of hypopharyngeal cancer globally is about 0.8 per 100 000. Globally, approximately 38 000 cases of head and neck cancer are considered yearly to be high-risk human papillomavirus (HR-HPV) related. Biopsy material fixation in formalin and embedding in paraffin (FFPE) creates many challenges. The extraction of nucleic acid material requires a more complicated approach, and often the extracted DNA is fragmented. The aim of the study was to compare several HR-HPV detection methods in nucleic acid material extracted from FFPE samples. The extracted DNA was analysed with different molecular biology methods to assess DNA quality and to determine the presence of HPV DNA with various HPV detection systems. The results were compared and statistically analysed. There was good agreement between two real-time PCR methods — Anyplex II HPV28 and Sacace HPV High-Risk Screen Real-TM Quant. We failed to reach a conclusion on agreement between real-time PCR methods and HPV16 type-specific primer PCR. There was moderate positive correlation between Anyplex II HPV28 semiquantitative results and Sacace quantitative results. We suggest that real-time PCR assays detecting smaller DNA amplicons are good and reliable methods for detecting HPV genetic material in FFPE samples.


2008 ◽  
Vol 149 (1) ◽  
pp. 153-162 ◽  
Author(s):  
Tibor Takács ◽  
Csaba Jeney ◽  
Laura Kovács ◽  
Johanna Mózes ◽  
Márta Benczik ◽  
...  

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