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Human papillomavirus-16 is integrated in lung carcinomas: A study in Chile

Translated title of the contribution: Human papillomavirus-16 is integrated in lung carcinomas: A study in Chile
  • Francisco Aguayo
  • , Andrés Castillo
  • , Chihaya Koriyama
  • , Michiyo Higashi
  • , Alejandro H. Corvalan
  • , and other authors.
  • Kagoshima University
  • Pontificia Universidad Católica de Chile

Research output: Contribution to journalArticlepeer-review

57 Scopus citations

Abstract

The human papillomavirus (HPV) was detected in 20 (29%) out of 69 lung carcinomas (LCs) in Chile, by PCR and Southern blot, and was more frequently detected in squamous cell carcinoma (SQC) than in adenocarcinomas (46 vs 9%, P=0.001). HPV-16, positive in 11 cases, was the most frequently detected HPV genotype determined by DNA sequencing. HPV-16 E2/E6 ratio, estimated from real-time PCR analysis, was much lower than the unity, suggesting that at least a partial HPV-16 genome was integrated in all but one HPV-16-positive SQCs. The remaining one case was suspected to have only episomal HPV-16. Although the viral load was low in most of the LCs, a case showed the HPV-16 copy number as high as 8479 per nanogram DNA, which was even a few times higher than the minimum viral load of seven cervical carcinomas (observed viral load: 3356-609 392 per nanogram DNA). The expression of the HPV-16/18 E6 protein was found in only two HPV-16-positive SQCs (13%) but not in the case with the highest viral load. Although the viral load was in general very low and HPV E6 expression is none or weak, further studies seem warranted to examine aetiological involvement of high-risk HPV in lung carcinogenesis.
Translated title of the contributionHuman papillomavirus-16 is integrated in lung carcinomas: A study in Chile
Original languageEnglish
Pages (from-to)85-91
JournalBritish Journal of Cancer
Volume97
Issue number1
DOIs
StatePublished - 19 Jun 2007
Externally publishedYes

Keywords

  • Chile
  • Human papillomavirus
  • Integration
  • Lung carcinoma
  • Viral load

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