The Theoretical Population-Level Impact of a Prophylactic Human Papilloma Virus Vaccine
- 1 November 2002
- journal article
- Published by Wolters Kluwer Health in Epidemiology
- Vol. 13 (6) , 631-639
- https://doi.org/10.1097/00001648-200211000-00006
Abstract
The ongoing development of a vaccine against human papillomavirus (HPV) raises important questions about the impact of various vaccination strategies. Two mathematical models are developed to explore the population-level impact of an HPV vaccine. The first model focuses on the infection process and the second on the disease process (specifically, cervical carcinoma and cancer). Both population characteristics (, sexual mixing and rates of sex partner change) and vaccine characteristics affect the steady state prevalence of HPV that would be expected if a vaccine program is implemented. Under a particular set of assumptions, we find that vaccinating both men and women against a specific HPV type would result in a 44% decrease in prevalence of that type whereas vaccinating only women would result in a 30% reduction. We also find that if a vaccine gives protection against some, but not all, high risk types of HPV, the reduction in disease may be less than the reduction in HPV because the remaining high risk HPV types may replace the disease caused by the eliminated types. A multivalent vaccine containing the majority of disease-causing HPV types would greatly reduce the need for colposcopy, biopsy and treatment. However, it is unlikely that Pap-screening programs would become redundant unless the vaccine is highly effective and coverage is widespread. In contrast to less common infections that are primarily restricted to core groups, targeting the vaccine towards the most sexually active individuals is less effective for a common sexually transmitted infection such as HPV.Keywords
This publication has 16 references indexed in Scilit:
- Papillomavirus research update: highlights of the Barcelona HPV 2000 international papillomavirus conferenceJournal of Clinical Pathology, 2001
- Public health paradoxes and the epidemiological impact of an HPV vaccineJournal of Clinical Virology, 2000
- Mathematical Model for the Natural History of Human Papillomavirus Infection and Cervical CarcinogenesisAmerican Journal of Epidemiology, 2000
- Withdrawing low risk women from cervical screening programmes: mathematical modelling study Commentary: trials versus models in appraising screening programmesBMJ, 1999
- The Influence of Behavioural Heterogeneity on the Population Level Effect of Potential Prophylactic Human Immunodeficiency Virus Type 1 VaccinesJournal of the Royal Statistical Society Series A: Statistics in Society, 1998
- The transmission dynamics of hepatitis B in the UK: a mathematical model for evaluating costs and effectiveness of immunization programmesEpidemiology and Infection, 1996
- Cost-effectiveness of a routine varicella vaccination program for US childrenPublished by American Medical Association (AMA) ,1994
- Imperfect vaccines and herd immunity to HIVProceedings Of The Royal Society B-Biological Sciences, 1993
- Estimates of the worldwide frequency of sixteen major cancers in 1980International Journal of Cancer, 1988
- Directly Transmitted Infections Diseases: Control by VaccinationScience, 1982