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A pre-vaccination immune metabolic interplay determines the protective antibody response to a dengue virus vaccine
Author
Butantan affiliation
External affiliation
RPM Bioinfo Solutions ; Case Western Reserve University School of Medicine ; Emory University School of Medicine ; King AbdulAziz University ; Faculdade Israelita de Ciências da Saúde Albert Einstein ; Universite de Montreal ; (IAL) Instituto Adolfo Lutz ; (HC/HCFMUSP) Hospital das Clínicas da Faculdade de Medicina da Universidade de São Paulo ; (III-INCT) Instituto Nacional de Ciências e Tecnologia ; University of Washington School of Medicine ; Drexel University College of Medicine ; (USP) Universidade de São Paulo
Publication type
Article
Language
English
Access rights
Open access
Terms of use
CC BY-NC-ND
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Abstract
Protective immunity to dengue virus (DENV) requires antibody response to all four serotypes. Systems vaccinology identifies a multi-OMICs pre-vaccination signature and mechanisms predictive of broad antibody responses after immunization with a tetravalent live attenuated DENV vaccine candidate (Butantan-DV/TV003). Anti-inflammatory pathways, including TGF-β signaling expressed by CD68low monocytes, and the metabolites phosphatidylcholine (PC) and phosphatidylethanolamine (PE) positively correlate with broadly neutralizing antibody responses against DENV. In contrast, expression of pro-inflammatory pathways and cytokines (IFN and IL-1) in CD68hi monocytes and primary and secondary bile acids negatively correlates with broad DENV-specific antibody responses. Induction of TGF-β and IFNs is done respectively by PC/PE and bile acids in CD68low and CD68hi monocytes. The inhibition of viral sensing by PC/PE-induced TGF-β is confirmed in vitro. Our studies show that the balance between metabolites and the pro- or anti-inflammatory state of innate immune cells drives broad and protective B cell response to a live attenuated dengue vaccine.
Link to cite this reference
https://repositorio.butantan.gov.br/handle/butantan/5410
Journal title
Keywords
Issue Date
2024
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