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Metabolomic and transcriptomic signatures of influenza vaccine response in healthy young and older adults

Chih‐Hung Chou, Subhasis Mohanty, Heather A. Kang, Lingjia Kong, Julián Ávila-Pacheco, Samit R. Joshi, Ikuyo Ueda, Lesley Devine, Khadir Raddassi, Kerry A. Pierce, Sarah Jeanfavre, Kevin Bullock, Hailong Meng, Clary B. Clish, Fabio R. Santori

Aging Cell · 2022 · ▲ 24 citations

Abstract

Seasonal influenza causes mild to severe respiratory infections and significant morbidity, especially in older adults. Transcriptomic analysis in populations across multiple flu seasons has provided insights into the molecular determinants of vaccine response. Still, the metabolic changes that underlie the immune response to influenza vaccination remain poorly characterized. We performed untargeted metabolomics to analyze plasma metabolites in a cohort of younger and older subjects before and after influenza vaccination to identify vaccine-induced molecular signatures. Metabolomic and transcriptomic data were combined to define networks of gene and metabolic signatures indicative of high and low antibody response in these individuals. We observed age-related differences in metabolic baselines and signatures of antibody response to influenza vaccination and the abundance of α-linolenic and linoleic acids, sterol esters, fatty-acylcarnitines, and triacylglycerol metabolism. We identified a metabolomic signature associated with age-dependent vaccine response, finding increased tryptophan and decreased polyunsaturated fatty acids (PUFAs) in young high responders (HRs), while fatty acid synthesis and cholesteryl esters accumulated in older HRs. Integrated metabolomic and transcriptomic analysis shows that depletion of PUFAs, which are building blocks for prostaglandins and other lipid immunomodulators, in young HR subjects at Day 28 is related to a robust immune response to influenza vaccination. Increased glycerophospholipid levels were associated with an inflammatory response in older HRs to flu vaccination. This multi-omics approach uncovered age-related molecular markers associated with influenza vaccine response and provides insight into vaccine-induced metabolic responses that may help guide development of more effective influenza vaccines.

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Provenance

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OpenAlex
DOI
10.1111/acel.13682
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2026-07-25 MST

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APA
Chou, C., Mohanty, S., Kang, H.A., Kong, L., Ávila-Pacheco, J., Joshi, S.R., Ueda, I., Devine, L., Raddassi, K., Pierce, K.A., Jeanfavre, S., Bullock, K., Meng, H., Clish, C.B., Santori, F.R., Shaw, A.C., &amp; Xavier, R.J. (2022). Metabolomic and transcriptomic signatures of influenza vaccine response in healthy young and older adults. <em>Aging Cell</em>. https://doi.org/10.1111/acel.13682
Vancouver
Chou C, Mohanty S, Kang HA, Kong L, Ávila-Pacheco J, Joshi SR, et al. Metabolomic and transcriptomic signatures of influenza vaccine response in healthy young and older adults. Aging Cell. 2022. doi:10.1111/acel.13682.
BibTeX
@article{chihhung2022Metabo, title = {Metabolomic and transcriptomic signatures of influenza vaccine response in healthy young and older adults}, author = {Chih‐Hung Chou and Subhasis Mohanty and Heather A. Kang and Lingjia Kong and Julián Ávila-Pacheco and Samit R. Joshi and Ikuyo Ueda and Lesley Devine and Khadir Raddassi and Kerry A. Pierce and Sarah Jeanfavre and Kevin Bullock and Hailong Meng and Clary B. Clish and Fabio R. Santori and Albert C. Shaw and Ramnik J. Xavier}, journal = {Aging Cell}, year = {2022}, doi = {10.1111/acel.13682}, }

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