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Biology subjects

Satomi, A.

Publications and source records attributed to Satomi, A..

2 recordsLinked to original sources

Type I IFN dynamics define an early checkpoint for survival and orchestrate systemic neutrophil heterogeneity in lethal viral infection

The early host response is critical for protection against viral infections, yet the systemic events that dictate individual differences in outcomes remain poorly defined. Here, we leveraged variability in survival following intranasal vesicular stomatitis virus (VSV) challenge in genetically identical mice to retrospectively profile systemic immune responses associated with survival or lethality. Survival was strongly associated with a robust systemic type I interferon (IFN) surge within 24 hours of infection, and blockade of type I IFN signaling during this narrow early window markedly reduced survival, establishing early IFN induction as a key determinant of outcome. This protective IFN surge rapidly remodeled the systemic immune landscape. Single-cell profiling revealed a transcriptionally and functionally distinct ICAM1 neutrophil subset as the strongest early correlate of survival, primed within the bone marrow. ICAM1 neutrophils exhibited a pro-inflammatory signature and enhanced phagocytic activity compared with ICAM1- neutrophils, which predominated in lethal outcomes. Together, these findings define a type I IFN-driven early checkpoint that governs survival in lethal viral infection and identify ICAM1 neutrophils as a blood-accessible biomarker of protective immunity, highlighting the critical role of early innate immune dynamics in shaping disease trajectories and providing a framework for early prognostic markers and host-directed therapies.

immunology↗

Local niche-derived immunosuppressive CXCR2+ cells impair antiviral immunity

Symptom severity after viral infection varies among individuals, yet its mechanism remains poorly understood. We categorized mice into recovering and non-recovering groups based on body weight after infection of the same titer of vesicular stomatitis virus (VSV). We revealed that in the olfactory bulb (OB) where VSV initially expands, non-recovering mice exhibited an anti-inflammatory environment, suggesting its detrimental effect. Importantly, CXCR2+ cells resembling immunosuppressive myeloid-derived suppressor cells (MDSCs) were more abundant in the OB of non-recovering mice than in that of recovering mice after VSV infection. Depleting CXCR2+ MDSC-like cells from the brain increased inflammatory responses and the animals survival after infection. Furthermore, site-specific labeling indicated that a significant fraction of these cells in the OB originate from the skull-bone marrow (skull-BM) as well as circulation. This study reveals the lethal effects of CXCR2+ MDSC-like cells on local immune responses to viral infection, highlighting their therapeutic potential for antiviral defense.

immunology↗