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Published on: November 6, 2020
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.
Abstract:
Janus kinases (JAK) are intracellular tyrosine kinases that transduce cytokine-mediated signals to the nucleus, promoting gene expression. Cytokines play a major role in microbial sepsis, which is often associated with uncontrolled inflammation leading to death. JAK inhibitors have been used for the treatment of several autoimmune diseases by modulating immune response, but they have never been tested against microbial sepsis. Ruxolitinib is a small-molecule inhibitor of JAK1/2 proteins, which are involved in the downstream signaling pathway of the vast majority of proinflammatory and anti-inflammatory cytokines. We therefore studied the effect of ruxolitinib in a mouse model of sepsis due to Candida albicans. When ruxolitinib therapy (50 mg/kg [of body weight]/day) was started 1 day before infection, the median survival time was reduced by 3 days, the fungal loads in all organs were higher, the inflammation was significantly less, and serum tumor necrosis factor alpha (TNF-α) and interleukin 10 (IL-10) levels and IL-10/TNF-α ratios were higher than in controls. When ruxolitinib therapy (50 to 1.5 mg/kg/day) was started 1 day after infection, an inverted-U relationship was found, with 6.25 mg/kg/day prolonging median survival time by 6 days, resulting in similar fungal loads, less inflammation, and similar cytokine levels but higher IL-10/TNF-α ratios than the controls. The optimal dose of ruxolitinib controlled infection and prolonged survival with less inflammation than in control animals. Administration of JAK inhibitors may be a promising therapeutic adjunct that needs further investigation.
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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