TY - JOUR
T1 - Dengue virus envelope epitope-specific antibodies are associated with protection from severe dengue
AU - Lay, Sokchea
AU - Auerswald, Heidi
AU - Heng, Sievleang
AU - Sorn, Sopheak
AU - Ken, Sreymom
AU - Duran, Veronica
AU - Rebellon Sanchez, David Esteban
AU - Vinueza, Daniela
AU - Villar Centeno, Luis Angel
AU - Rosso, Fernando
AU - Einav, Shirit
AU - Sakuntabhai, Anavaj
AU - Rey, Felix A.
AU - Arien, Kevin K.
AU - Ly, Sowath
AU - Duong, Veasna
AU - Barba-Spaeth, Giovanna
AU - Cantaert, Tineke
N1 - FTX: CC BY
© 2026. The Author(s).
PY - 2026/8/6
Y1 - 2026/8/6
N2 - Our understanding of a protective humoral immune response to dengue virus (DENV) remains limited. The envelope (E) protein is the main antibody (Ab) target. While anti-fusion loop (FL) epitope monoclonal Abs (mAbs) can induce antibody dependent enhancement (ADE) in vitro, some mAbs targeting quaternary epitopes can cross-neutralize different DENV serotypes. However, the contribution of each Ab subset to disease outcome remains poorly characterized. We defined DENV2 E epitope-specific Abs dynamics and assessed their association with disease outcome in a cohort of hospitalized and subclinical dengue patients during post-primary DENV2 infection. We quantified and isolated anti-E epitope-specific Abs and tested their enhancing and neutralizing capacity. During the critical phase, FL-targeting antibodies were increased in hospitalized patients compared to subclinical cases. Antibodies targeting quaternary epitopes were reduced in severe dengue compared to classical dengue fever patients. Functionally, quaternary epitope-targeting antibodies showed stronger neutralization and cross-neutralization properties, while FL-binding antibodies displayed stronger in vitro enhancement. These findings show that anti-DENV2 E epitope-specific Ab proportions correlate with disease susceptibility and severity, with important implications for novel vaccine design.
AB - Our understanding of a protective humoral immune response to dengue virus (DENV) remains limited. The envelope (E) protein is the main antibody (Ab) target. While anti-fusion loop (FL) epitope monoclonal Abs (mAbs) can induce antibody dependent enhancement (ADE) in vitro, some mAbs targeting quaternary epitopes can cross-neutralize different DENV serotypes. However, the contribution of each Ab subset to disease outcome remains poorly characterized. We defined DENV2 E epitope-specific Abs dynamics and assessed their association with disease outcome in a cohort of hospitalized and subclinical dengue patients during post-primary DENV2 infection. We quantified and isolated anti-E epitope-specific Abs and tested their enhancing and neutralizing capacity. During the critical phase, FL-targeting antibodies were increased in hospitalized patients compared to subclinical cases. Antibodies targeting quaternary epitopes were reduced in severe dengue compared to classical dengue fever patients. Functionally, quaternary epitope-targeting antibodies showed stronger neutralization and cross-neutralization properties, while FL-binding antibodies displayed stronger in vitro enhancement. These findings show that anti-DENV2 E epitope-specific Ab proportions correlate with disease susceptibility and severity, with important implications for novel vaccine design.
KW - Dependent enhancement
KW - Reactive antibodies
KW - Infection
KW - Disease
KW - Responses
KW - Potent
UR - https://www.webofscience.com/api/gateway?GWVersion=2&SrcApp=itm_wosliteitg&SrcAuth=WosAPI&KeyUT=WOS:001841872000001&DestLinkType=FullRecord&DestApp=WOS_CPL
U2 - 10.1038/s44321-026-00485-7
DO - 10.1038/s44321-026-00485-7
M3 - A1: Peer-reviewed journal articles
C2 - 42562883
SN - 1757-4676
JO - Embo Molecular Medicine
JF - Embo Molecular Medicine
ER -