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Denny, J. E.

Publications and source records attributed to Denny, J. E..

2 recordsLinked to original sources

Dynamic modulation of spleen germinal center reactions by gut bacteria during Plasmodium infection

Gut microbiota educate the local and distal immune system in early life to imprint long-term immunological outcomes while maintaining the capacity to dynamically modulate the local mucosal immune system throughout life. It is unknown if gut microbiota provide signals that dynamically regulate distal immune responses following an extra-gastrointestinal infection. Using the murine model of malaria, we show that existing spleen germinal center reactions are malleable to dynamic cues provided by gut bacteria that impact parasite burden. Gut bacteria composition was also shown to correlate with the severity of malaria in humans. Whereas antibiotic-induced changes in gut bacteria has been associated with immunopathology or impairment of immunity, our data demonstrate antibiotic-induced changes in gut bacteria can enhance humoral immunity to Plasmodium. This effect is not universal, but depends on baseline gut bacteria composition. These data demonstrate the dynamic communications that exist between gut bacteria and the systemic immune system as well as the plasticity of an ongoing humoral immune response. SummaryThe study by Mandal R, et al. provides new insight into the dynamic communications that exist between gut bacteria, the systemic immune system and the plasticity of spleen germinal center reactions during Plasmodium infection.

immunology

Loss of IL-10 signaling promotes IL-22 dependent host defenses against acute Clostridioides difficile infection

Infection with the bacterial pathogen Clostridioides difficile causes severe damage to the intestinal epithelium that elicits a robust inflammatory response. Markers of intestinal inflammation accurately predict clinical disease severity. However, determining the extent to which host-derived proinflammatory mediators drive pathogenesis versus promote host protective mechanisms remains elusive. In this report, we employed Il10-/- mice as a model of spontaneous colitis to examine the impact of constitutive intestinal immune activation, independent of infection, on C. difficile disease pathogenesis. Upon C. difficile challenge, Il10-/- mice exhibited significantly decreased morbidity and mortality compared to littermate Il10 heterozygote (Il10HET) control mice, despite a comparable C. difficile burden, innate immune response, and microbiota composition following infection. Similarly, antibody-mediated blockade of IL-10 signaling in wild-type C57BL/6 mice conveyed a survival advantage if initiated three weeks prior to infection. In contrast, no advantage was observed if blockade was initiated on the day of infection, suggesting that constitutive activation of inflammatory defense pathways prior to infection mediated host protection. IL-22, a cytokine critical in mounting a protective response against C. difficile infection, was elevated in the intestine of uninfected, antibiotic-treated Il10-/- mice, and genetic ablation of the IL-22 signaling pathway in Il10-/- mice negated the survival advantage following C. difficile challenge. Collectively, these data demonstrate that constitutive loss of IL-10 signaling, via genetic ablation or antibody blockade, enhances IL-22 dependent host defense mechanisms to limit C. difficile pathogenesis.

immunology