Treatment of Experimental Candida Sepsis with a Janus Kinase Inhibitor Controls Inflammation and Prolongs Survival

P Tsirigotis1, N Papanikolaou2, A Elefanti2

  • 1Second Department of Internal Medicine, Attikon University Hospital, National and Kapodistrian University of Athens, Athens, Greece.

Insights

Ruxolitinib, a Janus kinase (JAK) inhibitor, showed a dual effect in a mouse model of Candida albicans sepsis. Optimal dosing after infection improved survival and reduced inflammation, suggesting JAK inhibitors as a potential sepsis therapy.

Area of Science:

  • Immunology
  • Pharmacology
  • Infectious Diseases

Background:

  • Janus kinases (JAK) mediate cytokine signaling crucial in sepsis-induced inflammation.
  • JAK inhibitors are used in autoimmune diseases but not tested in microbial sepsis.
  • Ruxolitinib inhibits JAK1/2, key players in inflammatory and anti-inflammatory cytokine pathways.

Purpose of the Study:

  • To investigate the therapeutic potential of ruxolitinib in a mouse model of Candida albicans sepsis.
  • To evaluate the impact of ruxolitinib on survival, fungal load, inflammation, and cytokine profiles.

Main Methods:

  • A mouse model of sepsis induced by Candida albicans.
  • Administration of ruxolitinib at various doses before and after infection.
  • Assessment of survival rates, fungal burden in organs, inflammatory markers, and serum cytokine levels (TNF-α, IL-10).

Main Results:

  • Pre-infection ruxolitinib treatment reduced survival and increased fungal load.
  • Post-infection treatment showed an inverted-U dose-response curve, with an optimal dose (6.25 mg/kg/day) prolonging survival by 6 days.
  • Optimal ruxolitinib dose decreased inflammation and modulated the IL-10/TNF-α ratio without altering fungal loads.

Conclusions:

  • Ruxolitinib exhibits a dose-dependent and timing-dependent effect in fungal sepsis.
  • Optimal post-infection administration of ruxolitinib can improve survival and reduce inflammation.
  • JAK inhibition represents a promising therapeutic strategy for microbial sepsis, warranting further research.

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