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Reinhardt, C.

Publications and source records attributed to Reinhardt, C..

2 recordsLinked to original sources

IL-27 enhances the lymphocyte mediated innate resistance to primary hookworm infection in the lungs

Interleukin-27 (IL-27) is a heterodimeric cytokine of the IL-12 family, formed by non-covalent association of the promiscuous EBI3 subunit and selective p28 subunit. IL-27 is produced by mononuclear phagocytes and unfolds pleiotropic immune-modulatory functions through high affinity ligation to IL-27 receptor alpha (IL-27RA). While IL-27 is known to contribute to immunity and to end inflammation following numerous types of infections, its relevance for host defense against multicellular parasites is still poorly defined. Here, we investigated the role of IL-27 during infection with the soil-transmitted hookworm, Nippostrongylus brasiliensis, in its early intrapulmonary life cycle. IL-27(p28) was detectable in broncho-alveolar lavage fluids of C57BL/6J wild type mice on day 1 after subcutaneous N. brasiliensis inoculation. The expression of IL-27RA was most abundant on lung invading {gamma}{delta} T cells followed by CD8+ T cells, CD4+ T cells and NK cells. IL-27RA was weakly present on CD19+ B cells and absent on neutrophils, alveolar macrophages and eosinophils. Il27ra-/- mice showed increased parasite burden together with aggravated pulmonary hemorrhage and higher alveolar albumin leakage as a surrogate for disruption of the epithelial/vascular barrier. Conversely, recombinant mouse IL-27 injections of wild type mice reduced parasite burdens and lung injury. In multiplex screens, we identified higher airway accumulations of IL-6, TNF and MCP-3 (CCL7) in Il27ra-/- mice, while rmIL-27 treatment showed a reciprocal effect. Finally, {gamma}{delta} T cell infiltration of the airways required endogenous IL-27 expression. In summary, this report demonstrates protective functions of IL-27 to control the early larval stage of hookworm infection in the lungs.

immunology

Locus coeruleus patterns differentially modulate learning and valence in rat via the ventral tegmental area and basolateral amygdala respectively

The locus coeruleus (LC), the main source of forebrain norepinephrine, produces phasic and tonic firing patterns that are theorized to have distinct functional consequences. However, how different firing modes affect learning and valence coding of sensory information are unknown. Here bilateral optogenetic activation of rat LC neurons using 10-Hz phasic trains of either 300 msec or 10 sec accelerates acquisition of a food-rewarded similar odor discrimination, but not a dissimilar odor discrimination, consistent with LC-supported enhanced pattern separation and plasticity. Similar odor discrimination learning is impaired by noradrenergic blockade in the piriform cortex (PC). However, here 10-Hz LC phasic light-mediated learning facilitation is prevented by a dopaminergic antagonist in the PC, or by ventral tegmental area (VTA) silencing with lidocaine, suggesting an LC-VTA-PC dopamine circuitry mediates 10-Hz phasic learning facilitation. Tonic stimulation at 10 Hz did not alter odor discrimination acquisition, and was less effective in activating VTA DA neurons. For valence encoding, tonic stimulation at 25 Hz induced freezing, anxiety and conditioned odor aversion, while 10-Hz phasic stimulation produced an odor preference consistent with positive valence. Noradrenergic blockade in the basolateral amygdala (BLA) prevented conditioned odor preference and aversion induced by 10-Hz phasic and 25-Hz tonic light respectively. CTB retro-labeling showed relatively larger engagement of nucleus accumbens projecting neurons over central amygdala projecting neurons in the BLA with 10-Hz LC phasic activation, compared to 25-Hz tonic. These outcomes argue that LC pauses, as well as LC firing frequencies, differentially influence both target networks and behaviour.

neuroscience