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Viral Immunol ; 37(5): 221-239, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38841885

ABSTRACT

Human papillomavirus (HPV) is a circular, double-stranded DNA virus and recognized as the most prevalent sexually transmitted infectious agent worldwide. The HPV life cycle encompasses three primary stages. First, the virus infiltrates the basal cells of the stratified epidermis. Second, there is a low-level expression of viral genes and preservation of the viral genome in the basal layer. Lastly, productive replication of HPV occurs in differentiated cells. An effective immune response, involving various immune cells, including innate immunity, keratinocytes, dendritic cells, and natural killer T cells, is instrumental in clearing HPV infection and thwarting the development of HPV-associated tumors. Vaccines have demonstrated their efficacy in preventing genital warts, high-grade precancerous lesions, and cancers in females. In males, the vaccines can also aid in preventing genital warts, anal precancerous lesions, and cancer. This comprehensive review aims to provide a thorough and detailed exploration of HPV infections, delving into its genetic characteristics, life cycle, pathogenesis, and the role of high-risk and low-risk HPV strains. In addition, this review seeks to elucidate the intricate immune interactions that govern HPV infections, spanning from innate immunity to adaptive immune responses, as well as examining the evasion mechanisms used by the virus. Furthermore, the article discusses the current landscape of HPV vaccines and common treatments, contributing to a holistic understanding of HPV and its associated diseases.


Subject(s)
Papillomaviridae , Papillomavirus Infections , Papillomavirus Vaccines , Humans , Papillomavirus Infections/prevention & control , Papillomavirus Infections/immunology , Papillomavirus Vaccines/immunology , Papillomavirus Vaccines/administration & dosage , Female , Papillomaviridae/immunology , Papillomaviridae/genetics , Vaccination Coverage , Neoplasms/immunology , Neoplasms/therapy , Male , Immunity, Innate , Adaptive Immunity
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