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Infection of high risk human papillomavirus genotype in cervical epithelium in Beijing |
ZHANG Yiping1,TAN Yanping1,SUN Lijuan1, LIANG Baoxia1, WANG Li2 |
1.Department of Gynecology, The Third Hospital of Beijing Municipal Corps, Chinese People’s Armed Police Force, Beijing 100141, China; 2.Department of Neurosurgery,Kunming Yan’an Hospital, Kunming 650111,China |
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Abstract Objective To investigate the infection of high risk human papillomavirus subtype in cervical epithelium in Beijing. Methods From September 2012 to March 2015 ,female outpatients in this hospital received HPV subtype gene testing .The infection rate of 13 kinds of HR-HPV in the crowd and in different age group were observed. Results The total infection rate of HPV was 18.59%(865/4654) in this group, among these the rate of single subtype HPV infection was 74.34%(643/865), the multiple subtype infection accounted for 25.66%(222/865).The total infection rate of HR-HPV was 17.15% (798/4654 ), except 67 cases of single low risk HPV infection.The top six subtypes of HR-HPV in crowd were HPV16(3.59%), HPV52(3.31%), HPV58(3.24%), HPV51(2.41%), HPV39(2.30%), and HPV18(1.78%). Before the age of 20 the infection rate of HR-HPV was the highest(30.05%),and then decreased with the increase of age. The infection rate increased after the age of 40 and during 46-50 a second peak was observed(16.55%), after the age of 50 the lowest infection rate(12.47%) was observed.Conclusion The common HR-HPV subtypes in Beijing region are HPV16, HPV52 and HPV58,and the age distribution manifests two peaks.
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Received: 20 July 2015
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[1] |
Muoz N, Kjaer S K, Sigurdsson K,et al. Impact of human papillomavirus (HPV)-6/11/16/18 vaccine on all HPV-associated genital diseases in young women[J]. J Natl Cancer Inst,2010,102(5):325-339.
|
[2] |
Serrano B,Alemany L,Tous S,et al.Potential impact of a nine-valent vaccine in human papillomavirus related cervical disease[J]. Infect Agent Cancer,2012,7(1):38.
|
[3] |
Olejniczak T,Rabiega G D,Niepsuj B J,et al.Human papilloma virus genotyping in women with abnormal cytology[J].Ginekol Pol,2015 ,86(7):541-546.
|
[4] |
de Sanjosé S,Diaz M,Castellsagué X,et al. Worldwide prevalence and genotype distribution of cervical human papillomavirus DNA in women with normal cytology: a meta-analysis[J]. Lancet Infect Dis,2007,7(7):453-459.
|
[5] |
Muoz N,Bosch F X, de Sanjosé S,et al. Epidemiologic classification of human papillomavirus types associated with cervical cancer[J]. N Engl J Med,2003,348(6):518-527.
|
[6] |
de Sanjosé S,Quint W G,Alemany L,et al. Human papillomavirus genotype attribution in invasive cervical cancer: a retrospective cross-sectional worldwidestudy[J]. Lancet Oncol,2010,11(11):1048-1056.
|
[7] |
Chan P K, Ho W C, Chan M C,et al. Meta-analysis on prevalence and attribution of human papillomavirus types 52 and 58 in cervical neoplasia worldwide[J]. PLoS One,2014,9(9):e107573.
|
[8] |
冯余宽,彭 英,朱 联,等.四川地区HPV亚型及多重感染与宫颈癌前病变的关系初探[J].四川大学学报(医学版),2015,46(3):422-425, 462.
|
[9] |
李 军,王一羽,田小飞,等.陕西省人乳头瘤病毒基因分型检测分析[J].中华预防医学杂志,2014,48(3):192-196.
|
[10] |
Jing L,Zhong X,Zhong Z,et al. Prevalence of human papillomavirus infection in Guangdong Province, China: a population-based survey of 78,355 women[J]. Sex Transm Dis,2014,41(12):732-738.
|
[11] |
Halec G, Alemany L,Lloveras B,et al. Pathogenic role of the eight probably/possibly carcinogenic HPV types 26, 53, 66, 67, 68, 70, 73 and 82 in cervical cancer[J]. J Pathol,2014 ,234(4):441-451.
|
[12] |
Joura E A,Ault K A,Bosch F X,et al. Attribution of 12 high-risk human papillomavirus genotypes to infection and cervical disease[J]. Cancer Epidemiol Biomarkers Prev,2014 ,23(10):1997-2008.
|
[1] |
. [J]. Med. J. Chin. Peop. Armed Poli. Forc., 2019, 30(7): 629-632. |
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