Please use this identifier to cite or link to this item: https://repository.monashhealth.org/monashhealthjspui/handle/1/60577
Title: Mapping immune cellular landscapes and vaccine responses across a spectrum of health and immunodeficiency.
Authors: Vespasiani D.;Quig A.;Lancaster J.;Shen C.Y.;Cooper J.;Tuong Z.K.;Jackson A.;Schulz S.;Tsang S.-Y.;Deckert K.;Lucas E.C.;Margetts M.;Horton M.;Chan S.;Bosco J.J.;Chatelier J.;Ojaimi S. ;Slade C.;Jin C.;King H.W.
Monash Health Department(s): Monash University - School of Clinical Sciences at Monash Health
Pathology
Institution: (Vespasiani, Quig, Lancaster, Shen, Cooper, Lucas, Margetts, Horton, Chan, Slade, Jin, King) Walter and Eliza Hall Institute of Medical Research, VIC, Australia
(Quig, Shen, Cooper, King) Department of Medical Biology, University of Melbourne, VIC, Australia
(Tuong) Ian Frazer Centre for Children's Immunotherapy Research, University of Queensland, QLD, Australia
(Jackson, Schulz, Tsang, Chan, Chatelier, Slade) Department of Clinical Immunology and Allergy, Royal Melbourne Hospital, VIC, Australia
(Deckert, Chan) Department of Infectious Diseases & Immunology, Austin Health, VIC, Australia
(Bosco) Alfred Hospital, VIC, Australia
(Bosco, Chatelier) School of Translational Medicine, Monash University, VIC, Australia
(Ojaimi) Department of Pathology, Monash Health, VIC, Australia
(Ojaimi) Department of Medicine, Southern Clinical School, Monash University, VIC, Australia
(Jin) Department of Pathology, Royal Melbourne Hospital, VIC, Australia
(Jin) Department of Infectious Diseases, University of Melbourne, VIC, Australia
Issue Date: 30-Jul-2026
Copyright year: 2026
Publisher: bioRxiv
Place of publication: United States
Publication information: bioRxiv. (no pagination), 2026. Date of Publication: 26 May 2026.
Journal: bioRxiv
Abstract: Immune responses to infection and vaccination exhibit diversity between individuals that can be shaped by differences in their immune cell landscapes and the signalling, transcriptional, and genetic mechanisms that coordinate immune cell function. Specific antibody deficiency (SAD) and common variable immunodeficiency (CVID) are common forms of predominantly antibody deficiencies that result in poor responses to vaccination. While molecular and cellular causes of the immune dysfunction and poor vaccination responses for individuals with CVID have been reported, immune cell or molecular defects have not yet been identified in SAD. Here, we have used single-cell multi-omics to define the cellular landscapes, transcriptional states, adaptive immune repertoires and protein expression of patients with SAD and CVID before and after polysaccharide vaccination. We discovered that while SAD and CVID exhibit overlapping immune defects, including accumulation of exhausted NK memory cells and dysregulated expression of genes that mediate lipopolysaccharide sensing and clearance by monocytes, individuals with SAD have a unique expansion of cytotoxic CD4+ T cells that correlates with reduced regulatory T cells. In response to vaccination, we observed rapid changes in gene expression associated with lipopolysaccharide responses by monocytes and NF-kB pathway activation in B cells, and an apparent expansion of a CD95+ class-switched memory B cell population that does not occur in patients with lower antigen-specific responses. Together, our findings reveal cellular and molecular factors that underpin variability in vaccine responses and define SAD in a broader spectrum of immune dysfunction.Copyright The copyright holder for this preprint is the author/funder, who has granted bioRxiv a license to display the preprint in perpetuity. It is made available under a CC-BY-NC 4.0 International license.
DOI: http://monash.idm.oclc.org/login?url=https://dx.doi.org/10.64898/2026.05.21.726432
URI: https://repository.monashhealth.org/monashhealthjspui/handle/1/60577
Type: Preprint
Subjects: B lymphocyte
CD4+ T lymphocyte
cell function
cell common variable immunodeficiency
gene expression
humoral immune deficiency
immune deficiency
immune response
immunocompetent cell
memory B lymphocyte
memory cell
monocyte
multiomics
protein expression
regulatory T lymphocyte
signal transduction
vaccination
lipopolysaccharide
polysaccharide vaccine
vaccine
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