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Development of a human papillomavirus (HPV) multiplex immunoassay to profile HPV antibodies. | LitMetric

AI Article Synopsis

  • - Neutralizing antibodies (NAbs) are crucial for vaccine protection against HPV, but the necessary levels for effective protection are still unknown.
  • - The study introduces a new multiplex bead-based immunoassay that can efficiently analyze antibody responses to multiple oncogenic HPV types found in the nonavalent HPV vaccine.
  • - This new assay is faster and uses fewer samples than the traditional HPV pseudovirion-based neutralization assay (PBNA), showing strong agreement with NAb results from the PBNA.

Article Abstract

Neutralizing antibodies (NAbs) are considered the primary mechanism of vaccine-mediated protection against human papillomaviruses (HPV), the causative agent of cervical cancer. However, the minimum level of NAb needed for protection is currently unknown. The HPV pseudovirion-based neutralization assay (PBNA) is the gold standard method for assessing HPV antibody responses but is time-consuming and labor-intensive. With the development of higher valency HPV vaccines, alternative serological assays with the capacity for multiplexing would improve efficiency and output. Here we describe a multiplex bead-based immunoassay to characterize the antibody responses to the seven oncogenic HPV types (HPV16/18/31/33/45/52/58) contained in the current licensed nonavalent HPV vaccine. This assay can measure antibody isotypes and subclasses (total IgG, IgM, IgA1-2, IgG1-4), and can be adapted to measure other antibody features (e.g., Fc receptors) that contribute to vaccine immunity. When tested with serum samples from unvaccinated and vaccinated individuals, we found high concordance between HPV-specific IgG using this multiplex assay and NAbs measured with PBNA. Overall, this assay is high-throughput, sample-sparing, and time-saving, providing an alternative to existing assays for the measurement and characterization of HPV antibody responses.

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Source
http://dx.doi.org/10.1002/jmv.29732DOI Listing

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