IL-36 gamma Protects against Macrophage Survival and Limiting Viral Replication
JOURNAL OF IMMUNOLOGY
Authors: Wein, Alexander N.; Dunbar, Paul R.; McMaster, Sean R.; Li, Zheng-Rong Tiger; Denning, Timothy L.; Kohlmeier, Jacob E.
Abstract
Although influenza virus infection remains a concerning disease for public health, the roles of individual cytokines during the immune response to influenza infection are not fully understood. We have identified IL-36 gamma as a key mediator of immune protection during both high-and low-pathogenesis influenza infection. Il36g mRNA is upregulated in the lung following influenza infection, and mice lacking IL-36 gamma have greatly increased morbidity and mortality upon infection with either H1N1 or H3N2 influenza. The increased severity of influenza infection in IL-36 gamma-knockout (KO) mice is associated with increased viral titers, higher levels of proinflammatory cytokines early in infection, and more diffuse pathologic conditions late in the disease course. Interestingly, the increased severity of disease in IL-36 gamma-KO mice correlates with a rapid loss of alveolar macrophages following infection. We find that the alveolar macrophages from naive IL-36 gamma-KO mice have higher expression of M2-like surface markers compared with wild-type (WT) mice and show increased apoptosis within 24 h of infection. Finally, transfer of WT alveolar macrophages to IL-36 gamma-KO mice restores protection against lethal influenza challenge to levels observed in WT mice. Together, these data identify a critical role for IL-36 gamma in immunity against influenza virus and demonstrate the importance of IL-36 gamma signaling for alveolar macrophage survival during infection.
Tape strips from early-onset pediatric atopic dermatitis highlight disease abnormalities in nonlesional skin
ALLERGY
Authors: Pavel, Ana B.; Renert-Yuval, Yael; Wu, Jianni; Del Duca, Ester; Diaz, Aisleen; Lefferdink, Rachel; Fang, Milie M.; Canter, Talia; Rangel, Stephanie M.; Zhang, Ning; Krueger, James G.; Paller, Amy S.; Guttman-Yassky, Emma
Abstract
Background Skin biopsies promote our understanding of atopic dermatitis/AD pathomechanisms in infants/toddlers with early-onset AD, but are not feasible in pediatric populations. Tape strips are an emerging, minimally invasive alternative, but global transcriptomic profiling in early pediatric AD is lacking. We aimed to provide global lesional and nonlesional skin profiles of infants/toddlers with recent-onset, moderate-to-severe AD using tape strips. Methods Sixteen tape strips were collected for RNA-seq profiling from 19 infants/toddlers (<5 years old; lesional and nonlesional) with early-onset moderate-to-severe AD (<= 6 months) and 17 healthy controls. Results We identified 1829 differentially expressed genes/DEGs in lesional AD and 662 DEGs in nonlesional AD, vs healthy skin (fold-change >= 2, FDR <0.05), with 100% sample recovery. Both lesional and nonlesional skin showed significant dysregulations of Th2 (CCL17 and IL4R) and Th22/Th17 (IL36G, CCL20, and S100As)-related genes, largely lacking significant Th1-skewing. Significant down-regulation of terminal differentiation (FLG and FLG2), lipid synthesis/metabolism (ELOVL3 and FA2H), and tight junction (CLDN8) genes were primarily seen in lesional AD. Significant negative correlations were identified between Th2 measures and epidermal barrier gene-subsets and individual genes (FLG with IL-4R and CCL17;r < -0.4,P < .05). Significant correlations were also identified between clinical measures (body surface area/BSA, pruritus ADQ, and transepidermal water loss/TEWL) with immune and barrier mRNAs in lesional and/or nonlesional AD (FLG/FLG2 with TEWL;r < -0.4,P < .05). Conclusion RNA-seq profiling using tape strips in early-onset pediatric AD captures immune and barrier alterations in both lesional and nonlesional skin. Tape strips provide insight into disease pathomechanisms and cutaneous disease activity.