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January 14, 2026Open Forum Infectious Diseases0 citationsOpen Access

P-1542. Itaconic Acid Exerts Antifungal Properties in Macrophages Against Cryptococcus neoformans

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KYKyungyoon YooAKAlka KumariCBCamila Boniche-Alfaro

Key Points

  • The research investigates the role of itaconic acid in enhancing macrophage activity against cryptococcus neoformans infection.
  • Infected human and mouse macrophages with opsonized cryptococcus neoformans.
  • Measured Acod1 mRNA expression using RT-qPCR and assessed phagocytic killing by CFU quantification.
  • Analyzed itaconic acid uptake by cryptococcus neoformans using LC-MS and growth inhibition via optical density tracking.
  • Evaluated in vivo effects in Galleria mellonella and C57BL/6 mice models with itaconic acid injections.
  • Cryptococcus neoformans infection increased Acod1 expression in macrophages.
  • Exogenous itaconic acid improved macrophage phagocytic killing of cryptococcus neoformans.
  • Decreased itaconic acid synthesis reduced killing efficiency of macrophages.
  • Cryptococcus neoformans cells absorbed itaconic acid, which inhibited fungal growth in a glucose/pH-dependent manner.
  • Itaconic acid derivatives improved survival in Galleria mellonella and reduced lung and brain fungal burdens in mouse models.

Abstract

Abstract Background Cryptococcus neoformans (CN) is an opportunistic fungal pathogen that causes more than 180,000 deaths annually. From primary infection by inhalation, fungal cells can disseminate to the central nervous system and cause cryptococcal meningitis, particularly in immunocompromised populations. Estimated one-year mortality for patients receiving care can be as high as 70%, suggesting that current antifungal treatments are inadequate. Macrophages are primary effector cells for cryptococcal elimination from the host, and the interaction between macrophages and CN can dictate the outcome of cryptococcal infection. Macrophages can control the growth of intracellular pathogens, which involves the production of itaconic acid (IA), an immunomodulatory metabolite produced within the TCA cycle. Although IA and IA derivatives have been shown to have antimicrobial properties through direct antibacterial effects and by enhancing intracellular killing, it is not known whether these compounds can alter the outcome of cryptococcal infection. Methods Human and mouse macrophages were infected with antibody/serum opsonized CN. mRNA expression of Acod1 was measured by RT-qPCR and phagocytic killing by macrophages was determined by quantifying the CFU over time. IA uptake into CN cells was measured by LC-MS, and inhibition of CN growth by IA in axenic culture was determined by tracking the optical density. Galleria mellonella and C57BL/6 mice were injected with IA and its derivatives to determine the in vivo effects of IA during CN infection. Results CN infection induced Acod1 expression in human and mouse macrophages. Furthermore, addition of exogenous IA and its derivatives improved phagocytic killing, and inhibition of IA synthesis decreased killing of CN cells by macrophages. While CN did not endogenously produce IA, CN cells took up IA which restricted fungal growth in a glucose/pH-dependent manner. Lastly, IA and its analogues improve survival in Galleria waxworm infection model and reduce early lung and late brain fungal burden in a mouse infection model. Conclusion Our study elucidates the role of macrophage-derived and exogenously administered IA in controlling cryptococcal infection and will help guide the development of host-directed antifungal therapy to treat CN infection. Disclosures All Authors: No reported disclosures

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Cite This Study

Yoo et al. (2026) studied this question.

synapsesocial.com/papers/6966e70113bf7a6f02bff2dehttps://doi.org/10.1093/ofid/ofaf695.1723
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