TY - JOUR
T1 - XBB.1.5 monovalent vaccine induces lasting cross-reactive responses to SARS-CoV-2 variants such as HV.1 and JN.1, as well as SARS-CoV-1, but elicits limited XBB.1.5 specific antibodies
AU - PVI
AU - Carreño, Juan Manuel
AU - Lerman, Brian
AU - Singh, Gagandeep
AU - Abbad, Anass
AU - Yellin, Temima
AU - Ehrenhaus, Jordan
AU - Fried, Miriam
AU - Nardulli, Jessica R.
AU - Kang, Hyun Min
AU - Mulder, Lubbertus C.F.
AU - Gleason, Charles
AU - Srivastava, Komal
AU - Simon, Viviana
AU - Krammer, Florian
AU - Aracena, Ashley
AU - Chen, Yuexing
AU - Cognigni, Christian
AU - Fitzgerald, Dylan
AU - Gonzalez-Reiche, Ana
AU - Kleiner, Giulio
AU - Lyttle, Neko
AU - Mauldin, Jacob D.
AU - Mischka, Jacob
AU - Monahan, Brian C.
AU - Ramsamooj, Reima
AU - Sordillo, Emilia Mia
AU - van Bakel, Harm
AU - van Kesteren, Morgan
N1 - Publisher Copyright:
Copyright © 2025 Carreño et al.
PY - 2025/4
Y1 - 2025/4
N2 - The evolution of the antibody response to the severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) is impacted by the nature and number of antigenic exposures. First-generation coronavirus disease 2019 (COVID-19) vaccines encoded an ancestral spike protein. Updated bivalent vaccines and breakthrough infections have shaped the intricate diversity of the polyclonal antibody response and specificity of individual antibody clones. We and others previously showed that bivalent vaccines containing the ancestral and Omicron (BA.5) spikes induce high levels of cross-reactive antibodies but undetectable BA.5-specific antibodies in serum. Here, we assessed sera collected before as well as 1 and 3 months following administration of an updated XBB.1.5 monovalent vaccine to individuals with diverse infection and vaccination histories. Vaccination increased neutralization against recent variants of concern, including HV.1, JN.1, and the vaccine-homologous XBB.1.5. Antibody binding and avidity against ancestral and XBB.1.5 antigens significantly increased after vaccination. However, antibody depletion experiments showed that most of the response was cross-reactive to the ancestral spike, and only low levels of XBB.1.5-specific antibodies to the spike or the receptor-binding domain were detected. Importantly, increased antibody levels were still detectable in circulation 3 months post-vaccination and cross-reacted with severe acute respiratory syndrome coronavirus 1 (SARS-CoV-1) as measured by pseudovirus neutralization and binding assays. Overall, our data suggest that the XBB.1.5 monovalent vaccine predominantly elicits a cross-reactive response imprinted by viral spike antigens encountered early during the pandemic.
AB - The evolution of the antibody response to the severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) is impacted by the nature and number of antigenic exposures. First-generation coronavirus disease 2019 (COVID-19) vaccines encoded an ancestral spike protein. Updated bivalent vaccines and breakthrough infections have shaped the intricate diversity of the polyclonal antibody response and specificity of individual antibody clones. We and others previously showed that bivalent vaccines containing the ancestral and Omicron (BA.5) spikes induce high levels of cross-reactive antibodies but undetectable BA.5-specific antibodies in serum. Here, we assessed sera collected before as well as 1 and 3 months following administration of an updated XBB.1.5 monovalent vaccine to individuals with diverse infection and vaccination histories. Vaccination increased neutralization against recent variants of concern, including HV.1, JN.1, and the vaccine-homologous XBB.1.5. Antibody binding and avidity against ancestral and XBB.1.5 antigens significantly increased after vaccination. However, antibody depletion experiments showed that most of the response was cross-reactive to the ancestral spike, and only low levels of XBB.1.5-specific antibodies to the spike or the receptor-binding domain were detected. Importantly, increased antibody levels were still detectable in circulation 3 months post-vaccination and cross-reacted with severe acute respiratory syndrome coronavirus 1 (SARS-CoV-1) as measured by pseudovirus neutralization and binding assays. Overall, our data suggest that the XBB.1.5 monovalent vaccine predominantly elicits a cross-reactive response imprinted by viral spike antigens encountered early during the pandemic.
KW - COVID-19 vaccine
KW - SARS-CoV-2
KW - XBB.1.5 monovalent vaccine
KW - cross-reactive immune responses
KW - imprinting
UR - https://www.scopus.com/pages/publications/105002785088
U2 - 10.1128/mbio.03607-24
DO - 10.1128/mbio.03607-24
M3 - Article
C2 - 40042313
AN - SCOPUS:105002785088
SN - 2161-2129
VL - 16
JO - mBio
JF - mBio
IS - 4
ER -