Multi-omic Signatures of Baseline Immunity Shape Antiviral Responses in Adults and Infants 2327944

Z Zhuoqing Fang (Stanford University School of Medicine) Y Yupeng Feng (Stanford University School of Medicine) A Allison Burrell (Cincinnati Children’s Hospital Medical Center) S Sara Spranger (Cincinnati Children’s Hospital Medical Center) D Daniel Payne (3James Cook University Hospital, Middlesbrough, United Kingdom) B Brendon White (Cincinnati Children’s Hospital Medical Center) H Huibin Lv N Nathaniel Bloom (Stanford University School of Medicine) Y Yanli Wang Z Zuolin Chen (Stanford University School of Medicine) M Mengyun Hu (Stanford University School of Medicine) A Anice Lowen (Emory University School of Medicine) J Jessica Traenkner (Emory University School of Medicine) M Mathew Pauly (Emory University School of Medicine) M Meredith Shephard (Emory University School of Medicine) H Hoden Maecker (Stanford University School of Medicine) S Seema Lakdawala (Emory University School of Medicine) N Nicholas Wu (University of Illinois Urbana-Champaign) N Nadine Rouphael M Mary Staat (Cincinnati Children’s Hospital Medical Center) B Bali Pulendran

Abstract

Abstract Introduction Infants and young children are vulnerable to influenza and exhibit prolonged viral shedding, but their “baseline” immune state that influences their first infection response is poorly understood. Although often seen as immature, infant immunity quickly changes after birth. We investigated how early-life baseline immune architecture relates to systemic and mucosal antiviral responses. Methods We utilized a systems immunology approach, analyzing 929 samples from a longitudinal cohort of young children with natural infections (IMPRINT) and adults from a controlled infection (CHIM). We integrated proteomics, scRNA-seq and scATAC-seq to map immune states across pre-infection, acute, and convalescent stages. Results Multi-omic analysis revealed that healthy young children possess a “pre-activated” baseline state. Proteomics showed significantly elevated plasma interferons and pro-inflammatory cytokines in children compared to adults, which correlated with a blunted systemic response to influenza infection . Through scRNA-seq, we identified five distinct CD14+ monocyte subclusters. In adults, a higher baseline abundance of interferon-stimulated (ISG+) monocytes predicted better viral control; conversely, in children, a higher baseline abundance of inflammatory monocytes predicted poorer viral control. scATAC-seq supported this divergence, showing that opposing IRF and AP-1 chromatin accessibility programs are associated with these monocyte states. Finally, we identified a systemic—mucosal dichotomy: while children exhibited blunted blood responses, their nasal compartment was hyper-responsive, characterized by strong interferon/cytokine induction and epithelial—myeloid activation. Conclusion Our findings demonstrate that infant immunity is not merely underdeveloped but is a uniquely pre-activated and modularly organized system. By linking baseline epigenetic and transcriptional signatures to mucosal viral burden, this study identifies specific immune architectures that drive influenza susceptibility Funding Source n/a Topic Categories Computational and Systems Immunology (COMP)

Article Details

Volume / Issue Vol. 215, Issue Supplement_1
Published August 01, 2026
ISSN 0022-1767
Publisher American Association of Immunologists

Authors (21)

Z

Zhuoqing Fang

Stanford University School of Medicine

Y

Yupeng Feng

Stanford University School of Medicine

A

Allison Burrell

Cincinnati Children’s Hospital Medical Center

S

Sara Spranger

Cincinnati Children’s Hospital Medical Center

D

Daniel Payne

3James Cook University Hospital, Middlesbrough, United Kingdom

B

Brendon White

Cincinnati Children’s Hospital Medical Center

H

Huibin Lv

N

Nathaniel Bloom

Stanford University School of Medicine

Y

Yanli Wang

Z

Zuolin Chen

Stanford University School of Medicine

M

Mengyun Hu

Stanford University School of Medicine

A

Anice Lowen

Emory University School of Medicine

J

Jessica Traenkner

Emory University School of Medicine

M

Mathew Pauly

Emory University School of Medicine

M

Meredith Shephard

Emory University School of Medicine

H

Hoden Maecker

Stanford University School of Medicine

S

Seema Lakdawala

Emory University School of Medicine

N

Nicholas Wu

University of Illinois Urbana-Champaign

N

Nadine Rouphael

M

Mary Staat

Cincinnati Children’s Hospital Medical Center

B

Bali Pulendran