Electron transport chain capacity expands yellow fever vaccine immunogenicity
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Published:2024-05-14
Issue:6
Volume:16
Page:1310-1323
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ISSN:1757-4684
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Container-title:EMBO Molecular Medicine
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language:en
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Short-container-title:EMBO Mol Med
Author:
Mok Darren ZLORCID, Tng Danny JHORCID, Yee Jia Xin, Chew Valerie SY, Tham Christine YL, Ooi Justin SGORCID, Tan Hwee Cheng, Zhang Summer L, Lin Lowell ZORCID, Ng Wy ChingORCID, Jeeva Lavanya Lakshmi, Murugayee Ramya, Goh Kelvin K-K, Lim Tze-Peng, Cui Liang, Cheung Yin Bun, Ong Eugenia Z, Chan Kuan Rong, Ooi Eng EongORCID, Low Jenny GORCID
Abstract
AbstractVaccination has successfully controlled several infectious diseases although better vaccines remain desirable. Host response to vaccination studies have identified correlates of vaccine immunogenicity that could be useful to guide development and selection of future vaccines. However, it remains unclear whether these findings represent mere statistical correlations or reflect functional associations with vaccine immunogenicity. Functional associations, rather than statistical correlates, would offer mechanistic insights into vaccine-induced adaptive immunity. Through a human experimental study to test the immunomodulatory properties of metformin, an anti-diabetic drug, we chanced upon a functional determinant of neutralizing antibodies. Although vaccine viremia is a known correlate of antibody response, we found that in healthy volunteers with no detectable or low yellow fever 17D viremia, metformin-treated volunteers elicited higher neutralizing antibody titers than placebo-treated volunteers. Transcriptional and metabolomic analyses collectively showed that a brief course of metformin, started 3 days prior to YF17D vaccination and stopped at 3 days after vaccination, expanded oxidative phosphorylation and protein translation capacities. These increased capacities directly correlated with YF17D neutralizing antibody titers, with reduced reactive oxygen species response compared to placebo-treated volunteers. Our findings thus demonstrate a functional association between cellular respiration and vaccine-induced humoral immunity and suggest potential approaches to enhancing vaccine immunogenicity.
Funder
MOH | National Medical Research Council
Publisher
Springer Science and Business Media LLC
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