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Use of Interferon-γ Enzyme-linked Immunospot Assay to Characterize Novel T-cell Epitopes of Human Papillomavirus
Published on: March 8, 2012
Intramuscular therapeutic vaccination targeting HPV16 induces T cell responses that localize in mucosal lesions
Leonel Maldonado1, Jessica E Teague2, Matthew P Morrow3
1Department of Gynecology and Obstetrics, Johns Hopkins Medical Institutions, Baltimore, MD 21287, USA.
Abstract:
About 25% of high-grade cervical intraepithelial neoplasias (CIN2/3) caused by human papillomavirus serotype 16 (HPV16) undergo complete spontaneous regression. However, to date, therapeutic vaccination strategies for HPV disease have yielded limited success when measured by their ability to induce robust peripheral blood T cell responses to vaccine antigen. We report marked immunologic changes in the target lesion microenvironment after intramuscular therapeutic vaccination targeting HPV16 E6/E7 antigens, in subjects with CIN2/3 who had modest detectable responses in circulating T lymphocytes. Histologic and molecular changes, including markedly (average threefold) increased intensity of CD8(+) T cell infiltrates in both the stromal and epithelial compartments, suggest an effector response to vaccination. Postvaccination cervical tissue immune infiltrates included organized tertiary lymphoid-like structures in the stroma subjacent to residual intraepithelial lesions and, unlike infiltrates in unvaccinated lesions, showed evidence of proliferation induced by recognition of cognate antigen. At a molecular level, these histologic changes in the stroma were characterized by increased expression of genes associated with immune activation (CXCR3) and effector function (Tbet and IFNβ), and were also associated with an immunologic signature in the overlying dysplastic epithelium. High-throughput T cell receptor sequencing of unmanipulated specimens identified clonal expansions in the tissue that were not readily detectable in peripheral blood. Together, these findings indicate that peripheral therapeutic vaccination to HPV antigens can induce a robust tissue-localized effector immune response, and that analyses of immune responses at sites of antigen are likely to be much more informative than analyses of cells that remain in the circulation.
Insights
Therapeutic vaccination for high-grade cervical lesions (CIN2/3) induced significant immune responses directly within the targeted tissue. This approach activated T cells and promoted tissue-specific immune cell proliferation, suggesting localized treatment effectiveness.
Area of Science:
- Immunology
- Oncology
- Vaccinology
Background:
- High-grade cervical intraepithelial neoplasia (CIN2/3) affects approximately 25% of cases caused by human papillomavirus serotype 16 (HPV16).
- Current therapeutic vaccination strategies for HPV-related diseases show limited success in generating robust peripheral T cell responses.
Purpose of the Study:
- To investigate the immunologic changes within the target lesion microenvironment following intramuscular therapeutic vaccination against HPV16 E6/E7 antigens in patients with CIN2/3.
- To assess the efficacy of vaccination by analyzing tissue-localized immune responses.
Main Methods:
- Intramuscular therapeutic vaccination targeting HPV16 E6/E7 antigens in subjects with CIN2/3.
- Histologic and molecular analysis of cervical tissue microenvironment post-vaccination.
- High-throughput T cell receptor sequencing of tissue and peripheral blood samples.
Main Results:
- Vaccination led to a threefold increase in CD8(+) T cell infiltrates in both stromal and epithelial compartments of the lesions.
- Organized tertiary lymphoid-like structures and evidence of antigen-specific T cell proliferation were observed in vaccinated tissue.
- Molecular analysis revealed increased expression of immune activation and effector function genes (CXCR3, Tbet, IFNβ) in the stroma.
- Clonal T cell expansions were identified within the tissue, with limited detection in peripheral blood.
Conclusions:
- Peripheral therapeutic vaccination against HPV antigens can elicit a potent, tissue-localized effector immune response.
- Analyzing immune responses at the site of antigen is more informative than monitoring circulating T cells for evaluating vaccine efficacy.
- These findings suggest a promising approach for treating HPV-related lesions by focusing on tissue-level immune modulation.
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