Hybrid immunity from bivalent vaccination and prior infection enhances humoral and innate protection against Omicron XBB.1.16 and EG.5.1.1 variants in Japan
作者:Kouki Matsuda, Shohei Yamamoto, Chihiro Motozono, Yoshiki Aritsu, Yuki Furukawa, Airi Noborio, Daisuke Takada, Hiyori Sasagawa, Yuichi Akahori, K. Tsuchiya, Hiroyuki Gatanaga, Takamasa Ueno, Norio Ohmagari, Tetsuya Mizoue, Kenji Maeda · 发表于:Frontiers in Immunology · 年份:2026 · DOI:10.3389/fimmu.2026.1807238 · 研究领域:SARS-CoV-2 and COVID-19 Research、Immune responses and vaccinations、vaccines and immunoinformatics approaches
Introduction Emerging Omicron sublineages XBB.1.16 and EG.5.1.1 have caused breakthrough infections, challenging vaccine efficacy. Hybrid immunity—vaccination plus prior SARS-CoV-2 infection—augments neutralizing activity. We investigated whether innate immune responses also contribute to breakthrough prevention. Methods We analyzed samples from a previous case-control study of 50 breakthrough infection cases and 50 controls, all adults with ≥3 mRNA vaccine doses, recruited in June 2023 during the XBB.1.5 wave in Japan. Participants were classified as hybrid immunity (prior PCR-confirmed infection or N-IgG positive), high-vaccine-induced immunity (N-IgG negative, S-IgG > 10 4 U/mL), or low-vaccine-induced immunity (N-IgG negative, S-IgG < 10 4 U/mL). Neutralization titers (NT 50 ) were measured against ancestral SARS-CoV-2, XBB.1.16, and EG.5.1.1. Cytokines and innate markers were analyzed in serum and cell-based assays. Results Breakthrough cases were enriched in the low-vaccine-induced immunity group, with fewer exhibiting hybrid immunity. Hybrid immunity yielded higher NT 50 values than vaccine-only groups, but humoral immunity alone did not predict breakthrough infection. Cytokine analysis showed elevated IL-8 in hybrid non-breakthrough participants, with no differences in SARS-CoV-2-specific T-cell responses. Macrophages stimulated with the nucleocapsid protein induced IL-8, which promoted neutrophil chemotaxis. S100A8/A9, a neutrophil activation marker, co...