A stratified strategy for HPV16- and HPV18-specific immune monitoring using PBNA as a functional laboratory reference, cCLIA for high-throughput surrogate assessment, and IgG testing for population-level trend monitoring is supported.
Abstract
Introduction Serological monitoring is needed for the real-world evaluation of immune responses after human papillomavirus (HPV) vaccination, but the pseudovirion-based neutralization assay (PBNA) is difficult to apply at scale. Methods This study compared PBNA, competitive chemiluminescent immunoassay (cCLIA), and a virus-like particle-based indirect IgG immunoassay for HPV16- and HPV18-specific antibody assessment. The cross-sectional component included fully vaccinated recipients and unvaccinated controls, while the longitudinal component included adolescent girls receiving a two-dose bivalent HPV vaccine. Correlation, classification performance, systematic bias, and agreement were evaluated. Results All three assays reflected HPV16/HPV18-specific vaccine-induced antibody response trends. cCLIA showed a more stable relationship with PBNA results than the IgG assay, especially in longitudinal monitoring and after the second dose. Although the IgG assay showed lower stability than cCLIA for PBNA-defined functional classification, it consistently captured the overall pattern of vaccine-induced antibody responses at the population level. Persistent numerical differences indicated that the high-throughput assays were not directly interchangeable with neutralization titers. Discussion These findings support a stratified strategy for HPV16- and HPV18-specific immune monitoring using PBNA as a functional laboratory reference, cCLIA for high-throughput surrogate assessment, and IgG testing for population-level trend monitoring.
Persistent infection with high-risk human papillomavirus (HPV) types 16 and 18 is the primary cause of cervical cancer, and vaccination is an effective prevention method. The assessment of vaccine efficacy relies on measuring neutralizing antibodies (nAbs). However, the pseudovirion-based neutralization assay (PBNA), w...
Lin-Lin Wang, Wei-Ya Mao, Zhuo Zhang et al.· Journal of Virological Metho...· 0 citations
ABSTRACT Background Human papillomavirus (HPV)‐associated cancers are preventable with vaccination. Serologic assays monitor antibody responses, but their complexity and cost pose limitations when evaluating population level immunity. We developed an L1‐based assay for the detection of multiple type‐specific HPV antibo...
Arash Aslanabadi, Maryam Karimi, Laura Powell et al.· Journal of clinical laborato...· 0 citations
Background:
Human papillomavirus (HPV) infection is recognised as the major aetiological agent that causes cervical carcinogenesis worldwide. In Middle Eastern populations, the interaction between HPV infection and host immune response is still poorly understood, especially in terms of cytokine production and immune...
Sanaa Mohammad Abaas, M. Khalil, E. Abdullah· BIO Web of Conferences· 0 citations
Background Human papillomavirus (HPV) infection represents a substantial global health burden, being the primary etiological agent of cervical cancer, anogenital and oropharyngeal malignancies. Although prophylactic virus-like particle (VLP) vaccines have been successfully implemented, they lack therapeutic efficacy...
Valentina Yurina, E. Triastuti, Diana Lyrawati et al.· F1000Research· 0 citations
Seeking a simple vaccine to protect against all cancer-associated human papillomaviruses (HPV), L2 residues 17-36 of both HPV16 and HPV31 displayed on the surface of an Adeno-Associated Virus-Like Particle (AAVLP-HPV) was developed. Here, a phase 1 randomized, placebo-controlled, double-blind clinical study has been co...
J. Prangsgaard, E. Huus, J. Alvarez et al.· medRxiv· 1 citation
Background Female genital schistosomiasis (FGS) and high-risk human papillomavirus (hr-HPV) infections frequently co-occur in sub-Saharan Africa and may jointly contribute to cervical carcinogenesis. However, no existing molecular platform enables simultaneous detection of Schistosoma haematobium and hr-HPV from a sing...
E. T. Donkoh, Isaac Williams, Rita Nyaaba Akologo et al.· PLoS Neglected Tropical Dise...· 0 citations
We use cookies to run the site and, with your consent, for analytics and to show ads.
See our Cookie Policy.