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February 13, 2026JCI Insight2 citationsOpen Access

IFN-γ-induced trained immunity enhances killing of priority pathogens in healthy and genetically vulnerable individuals

DMDearbhla M MurphyIBIsabella BattenAOAoife O'Farrell

Key Points

  • To investigate the effects of IFN-γ on trained immunity in human monocytes and its potential in enhancing pathogen clearance.
  • Utilized human monocytes and induced trained immunity with IFN-γ.
  • Analyzed mTORC1 activation and glutaminolysis related to immune responses.
  • Conducted ATAC-sequencing to assess chromatin accessibility in trained macrophages.
  • Evaluated bactericidal activity against methicillin-resistant Staphylococcus aureus.
  • IFN-γ-induced trained macrophages showed increased glycolytic activity and enhanced immune responses.
  • Trained macrophages produced more reactive oxygen species, enhancing bactericidal activity.
  • Mice with TIRAP 180L polymorphism exhibited restored innate responses with IFN-γ training.

Abstract

Infectious diseases remain a global health challenge, driven by increasing antimicrobial-resistance and the threat of emerging epidemics. Mycobacterium tuberculosis and Staphylococcus aureus are leading causes of mortality worldwide. Trained immunity-a form of innate immune memory-offers a promising approach to enhance pathogen clearance. Here, we demonstrate that IFN-γ induces trained immunity in human monocytes through a mechanism involving mTORC1 activation, glutaminolysis, and epigenetic remodeling. Macrophages derived from IFN-γ-trained monocytes exhibited increased glycolytic activity with enhanced cytokine and chemokine responses upon stimulation or infection. Crucially, trained macrophages had increased production of reactive oxygen species which mediated enhanced bactericidal activity against methicillin-resistant S. aureus. Furthermore, ATAC-sequencing analysis of IFN-γ trained macrophages revealed increased chromatin accessibility in regions associated with host defence. Lastly, IFN-γ training restored impaired innate responses in macrophages from individuals homozygous for the TIRAP 180L polymorphism, a genetic variant associated with increased susceptibility to infection. These findings establish IFN-γ as a potent inducer of trained immunity in human monocytes and support its potential as a host-directed strategy to strengthen antimicrobial defenses, particularly in genetically susceptible individuals and high-risk clinical contexts.

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Cite This Study

Murphy et al. (2026) studied this question.

synapsesocial.com/papers/698ebeb185a1ff6a93016127https://doi.org/10.1172/jci.insight.195866
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