1
|
zur Hausen H: Papillomaviruses and cancer:
From basic studies to clinical application. Nat Rev Cancer.
2:342–350. 2002.PubMed/NCBI View
Article : Google Scholar
|
2
|
Kay P, Meehan K and Williamson AL: The use
of nested polymerase chain reaction and restriction fragment length
polymorphism for the detection and typing of mucosal human
papillomaviruses in samples containing low copy numbers of viral
DNA. J Virol Methods. 105:159–170. 2002.PubMed/NCBI View Article : Google Scholar
|
3
|
Shigeishi H and Sugiyama M: Risk factors
for oral human papillomavirus infection in healthy individuals: A
systematic review and meta-analysis. J Clin Med Res. 8:721–729.
2016.PubMed/NCBI View Article : Google Scholar
|
4
|
Madinier I, Doglio A, Cagnon L, Lefèbvre
JC and Monteil RA: Southern blot detection of human
papillomaviruses (HPVs) DNA sequences in gingival tissues. J
Periodontol. 63:667–673. 1992.PubMed/NCBI View Article : Google Scholar
|
5
|
Parra B and Slots J: Detection of human
viruses in periodontal pockets using polymerase chain reaction.
Oral Microbiol Immunol. 11:289–293. 1996.PubMed/NCBI View Article : Google Scholar
|
6
|
Hormia M, Willberg J, Ruokonen H and
Syrjänen S: Marginal periodontium as a potential reservoir of human
papillomavirus in oral mucosa. J Periodontol. 76:358–363.
2005.PubMed/NCBI View Article : Google Scholar
|
7
|
Horewicz VV, Feres M, Rapp GE, Yasuda V
and Cury PR: Human papillomavirus-16 prevalence in gingival tissue
and its association with periodontal destruction: A case-control
study. J Periodontol. 81:562–568. 2010.PubMed/NCBI View Article : Google Scholar
|
8
|
Fuster-Rossello L, Ribotta E, Cuffini C
and Fuster-Juan M: Human papilloma virus in oral mucosa and its
association with periodontal status of gynecologically infected
women. Acta Odontol Latinoam. 27:82–88. 2014.PubMed/NCBI View Article : Google Scholar
|
9
|
Jacob A, Janam P and Babu Vijayamma JM:
Prevalence of human papilloma virus in marginal periodontium and
its association with periodontitis: A cross sectional study. J
Indian Soc Periodontol. 18:447–450. 2014.PubMed/NCBI View Article : Google Scholar
|
10
|
Wiener RC, Sambamoorthi U and Jurevic RJ:
Association of periodontitis and human papillomavirus in oral rinse
specimens: Results from the National Health and Nutrition Survey
2009-2012. J Am Dent Assoc. 146:382–389. 2015.PubMed/NCBI View Article : Google Scholar
|
11
|
Baez CF, Savassi-Ribas F, Rocha WM,
Almeida SG, Gonçalves MT, Guimarães MA, Cavalcanti SM and Varella
RB: Association of Epstein-Barr virus (EBV) but not human
papillomavirus (HPV) with gingivitis and/or periodontitis in
transplanted individuals. Rev Inst Med Trop São Paulo.
58(58)2016.PubMed/NCBI View Article : Google Scholar
|
12
|
Sun CX, Bennett N, Tran P, Tang KD, Lim Y,
Frazer I, Samaranayake L and Punyadeera C: A pilot study into the
association between oral health status and human papillomavirus-16
infection. Diagnostics (Basel). 7(E11)2017.PubMed/NCBI View Article : Google Scholar
|
13
|
Ortiz AP, González D, Vivaldi-Oliver J,
Castañeda M, Rivera V, Díaz E, Centeno H, Muñoz C, Palefsky J,
Joshipura K, et al: Periodontitis and oral human papillomavirus
infection among Hispanic adults. Papillomavirus Res. 5:128–133.
2018.PubMed/NCBI View Article : Google Scholar
|
14
|
Ortiz AP, González D, Ramos J, Muñoz C,
Reyes JC and Pérez CM: Association of marijuana use with oral HPV
infection and periodontitis among Hispanic adults: Implications for
oral cancer prevention. J Periodontol. 89:540–548. 2018.PubMed/NCBI View Article : Google Scholar
|
15
|
McDaniel JT, Davis JM, McDermott RJ,
Maxfield I and Kapatamoyo K: Predicted prevalence of oral human
papillomavirus (HPV) by periodontitis status and HPV vaccination
status. J Public Health Dent. 80:132–139. 2020.PubMed/NCBI View Article : Google Scholar
|
16
|
Kwon T, Lamster IB and Levin L: Current
concepts in the management of periodontitis. Int Dent J: Dec 5,
2020 (Epub ahead of print). doi: 10.1111/idj.12630.
|
17
|
Socransky SS, Haffajee AD, Cugini MA,
Smith C and Kent RL Jr: Microbial complexes in subgingival plaque.
J Clin Periodontol. 25:134–144. 1998.PubMed/NCBI View Article : Google Scholar
|
18
|
Abeles SR, Robles-Sikisaka R, Ly M, Lum
AG, Salzman J, Boehm TK and Pride DT: Human oral viruses are
personal, persistent and gender-consistent. ISME J. 8:1753–1767.
2014.PubMed/NCBI View Article : Google Scholar
|
19
|
Slots J: Human viruses in periodontitis.
Periodontol 2000. 53:89–110. 2010.PubMed/NCBI View Article : Google Scholar
|
20
|
Dalla Torre D, Burtscher D, Sölder E,
Rasse M and Puelacher W: The correlation between the quality of
oral hygiene and oral HPV infection in adults: A prospective
cross-sectional study. Clin Oral Investig. 23:179–185.
2019.PubMed/NCBI View Article : Google Scholar
|
21
|
Checchi L, Montevecchi M, Checchi V and
Zappulla F: The relationship between bleeding on probing and
subgingival deposits. An endoscopical evaluation. Open Dent J.
3:154–160. 2009.PubMed/NCBI View Article : Google Scholar
|
22
|
Khurshid Z, Mali M, Naseem M, Najeeb S and
Zafar MS: Human gingival crevicular fluids (GCF) proteomics: An
overview. Dent J (Basel). 5(E12)2017.PubMed/NCBI View Article : Google Scholar
|
23
|
Shigeishi H, Murodumi H, Ohta K and
Sugiyama M: Detection of HPV16 E6 DNA in periodontal pockets of
middle-aged and older people. Oral Sci Int. 18:50–55. 2021.
|
24
|
Smith EM, Johnson SR, Ritchie JM,
Feddersen D, Wang D, Turek LP and Haugen TH: Persistent HPV
infection in postmenopausal age women. Int J Gynaecol Obstet.
87:131–137. 2004.PubMed/NCBI View Article : Google Scholar
|
25
|
Marks MA, Gravitt PE, Burk RD, Studentsov
Y, Farzadegan H and Klein SL: Progesterone and 17beta-estradiol
enhance regulatory responses to human papillomavirus type 16
virus-like particles in peripheral blood mononuclear cells from
healthy women. Clin Vaccine Immunol. 17:609–617. 2010.PubMed/NCBI View Article : Google Scholar
|
26
|
Faraji F, Zaidi M, Fakhry C and Gaykalova
DA: Molecular mechanisms of human papillomavirus-related
carcinogenesis in head and neck cancer. Microbes Infect.
19:464–475. 2017.PubMed/NCBI View Article : Google Scholar
|
27
|
Ali A, Lassi ZS, Kapellas K, Jamieson L
and Rumbold AR: A systematic review and meta-analysis of the
association between periodontitis and oral high-risk human
papillomavirus infection. J Public Health (Oxf): Sep 11, 2020 (Epub
ahead of print). doi: 10.1093/pubmed/fdaa156.
|
28
|
Shigeishi H, Sugiyama M, Ohta K, Yokoyama
S, Sakuma M, Murozumi H, Kato H and Takechi M: High HPV16 E6 viral
load in the oral cavity is associated with an increased number of
bacteria: A preliminary study. Biomed Rep. 8:59–64. 2018.PubMed/NCBI View Article : Google Scholar
|
29
|
Mitra A, MacIntyre DA, Marchesi JR, Lee
YS, Bennett PR and Kyrgiou M: The vaginal microbiota, human
papillomavirus infection and cervical intraepithelial neoplasia:
What do we know and where are we going next? Microbiome.
4(58)2016.PubMed/NCBI View Article : Google Scholar
|
30
|
Dareng EO, Ma B, Famooto AO, Adebamowo SN,
Offiong RA, Olaniyan O, Dakum PS, Wheeler CM, Fadrosh D, Yang H, et
al: Prevalent high-risk HPV infection and vaginal microbiota in
Nigerian women. Epidemiol Infect. 144:123–137. 2016.PubMed/NCBI View Article : Google Scholar
|
31
|
Takeshita T, Nakano Y, Kumagai T, Yasui M,
Kamio N, Shibata Y, Shiota S and Yamashita Y: The ecological
proportion of indigenous bacterial populations in saliva is
correlated with oral health status. ISME J. 3:65–78.
2009.PubMed/NCBI View Article : Google Scholar
|
32
|
Tuominen H, Rautava S, Syrjänen S, Collado
MC and Rautava J: HPV infection and bacterial microbiota in the
placenta, uterine cervix and oral mucosa. Sci Rep.
8(9787)2018.PubMed/NCBI View Article : Google Scholar
|
33
|
Chowdhry R, Singh N, Sahu DK, Tripathi RK,
Mishra A, Singh A, Mukerjee I, Lal N, Bhatt MLB and Kant R:
Dysbiosis and variation in predicted functions of the granulation
tissue microbiome in HPV positive and negative severe chronic
periodontitis. Biomed Res Int. 2019(8163591)2019.PubMed/NCBI View Article : Google Scholar
|
34
|
Abeles SR and Pride DT: Molecular bases
and role of viruses in the human microbiome. J Mol Biol.
426:3892–3906. 2014.PubMed/NCBI View Article : Google Scholar
|
35
|
Gao Z, Lv J and Wang M: Epstein-Barr virus
is associated with periodontal diseases: A meta-analysis based on
21 case-control studies. Medicine (Baltimore).
96(e5980)2017.PubMed/NCBI View Article : Google Scholar
|
36
|
Rodrigues PM, Teixeira AL, Kustner EC and
Medeiros R: Are herpes virus associated to aggressive
periodontitis? A review of literature. J Oral Maxillofac Pathol.
19:348–355. 2015.PubMed/NCBI View Article : Google Scholar
|
37
|
Botero JE, Rodríguez-Medina C,
Jaramillo-Echeverry A and Contreras A: Association between human
cytomegalovirus and periodontitis: A systematic review and
meta-analysis. J Periodontal Res. 55:551–558. 2020.PubMed/NCBI View Article : Google Scholar
|
38
|
Slots J: Periodontal herpesviruses:
Prevalence, pathogenicity, systemic risk. Periodontol 2000.
69:28–45. 2015.PubMed/NCBI View Article : Google Scholar
|
39
|
Zhu C, Li F, Wong MC, Feng XP, Lu HX and
Xu W: Association between herpesviruses and chronic periodontitis:
A meta-analysis based on case-control studies. PLoS One.
10(e0144319)2015.PubMed/NCBI View Article : Google Scholar
|
40
|
Imbronito AV, Okuda OS, Maria de Freitas
N, Moreira Lotufo RF and Nunes FD: Detection of herpesviruses and
periodontal pathogens in subgingival plaque of patients with
chronic periodontitis, generalized aggressive periodontitis, or
gingivitis. J Periodontol. 79:2313–2321. 2008.PubMed/NCBI View Article : Google Scholar
|
41
|
Botero JE, Parra B, Jaramillo A and
Contreras A: Subgingival human cytomegalovirus correlates with
increased clinical periodontal parameters and bacterial coinfection
in periodontitis. J Periodontol. 78:2303–2310. 2007.PubMed/NCBI View Article : Google Scholar
|
42
|
Teughels W, Sliepen I, Quirynen M, Haake
SK, Van Eldere J, Fives-Taylor P and Van Ranst M: Human
cytomegalovirus enhances A. actinomycetemcomitans adherence to
cells. J Dent Res. 86:175–180. 2007.PubMed/NCBI View Article : Google Scholar
|
43
|
Hara Y, Kimoto T, Okuno Y and Minekawa Y:
Effect of herpes simplex virus on the DNA of human papillomavirus
18. J Med Virol. 53:4–12. 1997.PubMed/NCBI
|
44
|
Shimabuku T, Tamanaha A, Kitamura B,
Tanabe Y, Tawata N, Ikehara F, Arakaki K and Kinjo T: Dual
expression of Epstein-Barr virus, latent membrane protein-1 and
human papillomavirus-16 E6 transform primary mouse embryonic
fibroblasts through NF-κB signaling. Int J Clin Exp Pathol.
7:1920–1934. 2014.PubMed/NCBI
|
45
|
Makielski KR, Lee D, Lorenz LD, Nawandar
DM, Chiu YF, Kenney SC and Lambert PF: Human papillomavirus
promotes Epstein-Barr virus maintenance and lytic reactivation in
immortalized oral keratinocytes. Virology. 495:52–62.
2016.PubMed/NCBI View Article : Google Scholar
|
46
|
Ojima M and Hanioka T: Destructive effects
of smoking on molecular and genetic factors of periodontal disease.
Tob Induc Dis. 8(4)2010.PubMed/NCBI View Article : Google Scholar
|
47
|
Mullally BH: The influence of tobacco
smoking on the onset of periodontitis in young persons. Tob Induc
Dis. 2:53–65. 2004.PubMed/NCBI View Article : Google Scholar
|
48
|
Hanioka T, Morita M, Yamamoto T, Inagaki
K, Wang PL, Ito H, Morozumi T, Takeshita T, Suzuki N, Shigeishi H,
et al: Smoking and periodontal microorganisms. Jpn Dent Sci Rev.
55:88–94. 2019.PubMed/NCBI View Article : Google Scholar
|
49
|
Antonsson A, Cornford M, Perry S, Davis M,
Dunne MP and Whiteman DC: Prevalence and risk factors for oral HPV
infection in young Australians. PLoS One. 9(e91761)2014.PubMed/NCBI View Article : Google Scholar
|
50
|
Cook RL, Thompson EL, Kelso NE, Friary J,
Hosford J, Barkley P, Dodd VJ, Abrahamsen M, Ajinkya S, Obesso PD,
et al: Sexual behaviors and other risk factors for oral human
papillomavirus infections in young women. Sex Transm Dis.
41:486–492. 2014.PubMed/NCBI View Article : Google Scholar
|
51
|
Dahlstrom KR, Burchell AN, Ramanakumar AV,
Rodrigues A, Tellier PP, Hanley J, Coutlée F and Franco EL: Sexual
transmission of oral human papillomavirus infection among men.
Cancer Epidemiol Biomarkers Prev. 23:2959–2964. 2014.PubMed/NCBI View Article : Google Scholar
|
52
|
Hang D, Liu F, Liu M, He Z, Sun M, Liu Y,
Li J, Pan Y, Ning T, Guo C, et al: Oral human papillomavirus
infection and its risk factors among 5,410 healthy adults in China,
2009-2011. Cancer Epidemiol Biomarkers Prev. 23:2101–2110.
2014.PubMed/NCBI View Article : Google Scholar
|
53
|
Lang Kuhs KA, Gonzalez P, Struijk L,
Castro F, Hildesheim A, van Doorn LJ, Rodriguez AC, Schiffman M,
Quint W, Lowy DR, et al: Costa Rica Vaccine Trial Group: Prevalence
of and risk factors for oral human papillomavirus among young women
in Costa Rica. J Infect Dis. 208:1643–1652. 2013.PubMed/NCBI View Article : Google Scholar
|
54
|
Gillison ML, Broutian T, Pickard RK, Tong
ZY, Xiao W, Kahle L, Graubard BI and Chaturvedi AK: Prevalence of
oral HPV infection in the United States, 2009-2010. JAMA.
307:693–703. 2012.PubMed/NCBI View Article : Google Scholar
|
55
|
Kero K, Rautava J, Syrjänen K, Willberg J,
Grenman S and Syrjänen S: Smoking increases oral HPV persistence
among men: 7-year follow-up study. Eur J Clin Microbiol Infect Dis.
33:123–133. 2014.PubMed/NCBI View Article : Google Scholar
|
56
|
Michaud DS, Joshipura K, Giovannucci E and
Fuchs CS: A prospective study of periodontal disease and pancreatic
cancer in US male health professionals. J Natl Cancer Inst.
99:171–175. 2007.PubMed/NCBI View Article : Google Scholar
|
57
|
Meyer MS, Joshipura K, Giovannucci E and
Michaud DS: A review of the relationship between tooth loss,
periodontal disease, and cancer. Cancer Causes Control. 19:895–907.
2008.PubMed/NCBI View Article : Google Scholar
|
58
|
Chrysanthakopoulos NA: Periodontal disease
- cancer association and the specific role of periodontal disease
in lung cancer pathogenesis. Mathews J Dentistry. 3(018)2018.
|
59
|
Hirschfeld J, White PC, Milward MR, Cooper
PR and Chapple IL: Modulation of neutrophil extracellular trap and
reactive oxygen species release by periodontal bacteria. Infect
Immun. 85:e00297–e17. 2017.PubMed/NCBI View Article : Google Scholar
|
60
|
Gholizadeh P, Eslami H, Yousefi M,
Asgharzadeh M, Aghazadeh M and Kafil HS: Role of oral microbiome on
oral cancers, a review. Biomed Pharmacother. 84:552–558.
2016.PubMed/NCBI View Article : Google Scholar
|
61
|
Mager DL, Haffajee AD, Devlin PM, Norris
CM, Posner MR and Goodson JM: The salivary microbiota as a
diagnostic indicator of oral cancer: A descriptive, non-randomized
study of cancer-free and oral squamous cell carcinoma subjects. J
Transl Med. 3(27)2005.PubMed/NCBI View Article : Google Scholar
|
62
|
Tezal M, Sullivan Nasca M, Stoler DL,
Melendy T, Hyland A, Smaldino PJ, Rigual NR and Loree TR: Chronic
periodontitis-human papillomavirus synergy in base of tongue
cancers. Arch Otolaryngol Head Neck Surg. 135:391–396.
2009.PubMed/NCBI View Article : Google Scholar
|
63
|
Tezal M, Scannapieco FA, Wactawski-Wende
J, Hyland A, Marshall JR, Rigual NR and Stoler DL: Local
inflammation and human papillomavirus status of head and neck
cancers. Arch Otolaryngol Head Neck Surg. 138:669–675.
2012.PubMed/NCBI View Article : Google Scholar
|
64
|
Wei L, Griego AM, Chu M and Ozbun MA:
Tobacco exposure results in increased E6 and E7 oncogene
expression, DNA damage and mutation rates in cells maintaining
episomal human papillomavirus 16 genomes. Carcinogenesis.
35:2373–2381. 2014.PubMed/NCBI View Article : Google Scholar
|