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Pardy, R.

Publications and source records attributed to Pardy, R..

2 recordsLinked to original sources

IL-27 limits HSPC differentiation during infection and protects from stem cell exhaustion

Many inflammatory stimuli can induce progenitor cells in the bone marrow to produce increased numbers of myeloid cells as part of the process of emergency myelopoiesis. These events are associated with trained immunity and have long-term impacts on hematopoietic stem and progenitor cell (HSPC) development but can also compromise their function. While many cytokines support emergency myelopoiesis, less is known about the mechanisms that temper these events. When mice that lack the cytokine IL-27 were infected with Toxoplasma gondii, there was enhanced generation of monocyte progenitors and increased numbers of inflammatory monocytes. In the bone marrow of infected mice there was increased production of IL-27 that localized with HSPCs and a survey of cytokine receptor expression highlighted that HSPCs were uniquely poised to respond to IL-27. Furthermore, the use of in vitro differentiation assays and mixed bone marrow chimeras revealed that HSPCs from IL-27 deficient mice are pre-disposed towards the monocyte lineage. Additional studies highlighted that after infection loss of the IL-27R resulted in reduced HSPC fitness that manifested as reduced proliferative responses and a decreased ability to reconstitute the hematopoietic system. Thus, the ability of IL-27 to act on HSPC provides a regulatory brake on differentiation to limit monocyte induction and preserve HSPC stemness.

immunology↗

A type 1 immune-stromal cell network mediates disease tolerance and barrier protection against intestinal infection

Type 1 immunity mediates host defense through pathogen elimination, but whether this pathway also impacts tissue function is unknown. Here we demonstrate that rapid induction of IFN{gamma} signaling coordinates a multi-cellular response that is critical to limit tissue damage and maintain gut motility following infection of mice with a tissue-invasive helminth. IFN{gamma} production is initiated by antigen-independent activation of lamina propria CD8+ T cells following MyD88-dependent recognition of the microbiota during helminth-induced barrier invasion. IFN{gamma} acted directly on intestinal stromal cells to recruit neutrophils that limited parasite-induced tissue injury. IFN{gamma} sensing also limited the expansion of smooth muscle actin-expressing cells to prevent pathological gut dysmotility. Importantly, this tissue-protective response had limited impact on parasite burden, indicating that IFN{gamma} supports a disease tolerance defense strategy. Our results have important implications for managing the pathophysiological sequelae of post-infectious gut dysfunction and chronic inflammatory diseases associated with stromal remodelling. HIGHLIGHTSO_LIType 1 immunity is required for disease tolerance to tissue-invasive infection. C_LIO_LIGut-resident CD8+ T cells produce IFN{gamma} in an antigen-independent, yet microbiota-dependent manner. C_LIO_LIIFN{gamma} signaling recruits neutrophils in a cell-extrinsic manner to limit helminth-induced tissue injury. C_LIO_LIDirect sensing of IFN{gamma} by intestinal stroma is essential to limit tissue damage and maintain gut motility during infection. C_LI

immunology↗