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Immune checkpoint molecules as biomarkers of Staphylococcus aureus bone infection and clinical outcome

Aug 2026 · Communications Medicine · 0 citations

Abstract

Staphylococcus aureus prosthetic joint infections (PJIs) are broadly considered incurable, and clinical diagnostics that guide conservative vs. aggressive surgical treatments don’t exist. Understanding the human T cell response to chronic S. aureus osteomyelitis may lead to improved patient outcomes and inform new therapeutic strategies. We performed multi-omics studies, including flow cytometry, scRNA-seq, and immunofluorescence in a humanized NSG-SGM3 BLT mouse model and with human clinical samples to characterize the human T cell landscape in S. aureus osteomyelitis. Human T cells are remarkably heterogeneous in gene expression and abundance. Notably, the CD4 Th1/Th17 cells comprise a mixed population of activated, progenitor-exhausted, and terminally-exhausted states with increased expression of immune checkpoint proteins (LAG-3, TIM-3). Importantly, these proteins are upregulated in the serum and the bone marrow of patients with S. aureus PJI. In a clinically informative pilot cohort, a multiparametric diagnostic integrating high serum immune checkpoint protein levels with low proinflammatory cytokine levels (IFN-γ, IL-2, TNF-α, IL-17) reveals that TIM-3 was highly predictive of adverse disease outcomes (AUC = 0.89). T cell impairment, marked by immune checkpoint expression and exhaustion, could serve as a functional biomarker for S. aureus PJI disease outcome, and therapeutic blockade of checkpoint proteins may represent a potential strategy to improve outcomes following surgery.

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