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Gomperts Boneca, I.

Publications and source records attributed to Gomperts Boneca, I..

2 recordsLinked to original sources

The impact of gut microbiota on depressive-like behaviors and adult hippocampal neurogenesis requires the endocannabinoid system

Depression is the leading cause of disability worldwide. Recent observations have revealed an association between mood disorders and alterations of the intestinal microbiota, but causality remains yet to be established. Here, using unpredictable chronic mild stress (UCMS) as a mouse model of depression, we show that the UCMS mice display phenotypic alterations -- characterized by an altered gut microbiota composition, a reduced adult hippocampal neurogenesis and a depressive-like behaviors -- which could be transferred from UCMS donors to naive recipient mice by fecal microbiota transplantation. The cellular and behavioral alterations observed in recipient mice were accompanied by a decrease in the endocannabinoid (eCB) signaling due to lower peripheral levels of fatty acid precursors of eCB ligands. The adverse effects of UCMS-transferred microbiota on adult neurogenesis and behavior in naive recipient mice were alleviated by selectively enhancing the central eCB tone or by adding arachidonic acid, a fatty acid precursor of eCB ligands, to the diet. In the gut of both UCMS donors and recipients, the microbiota composition was characterized by a relative decrease in Lactobacilli abundance, and complementation of the UCMS recipient microbiota with a strain of the Lactobacilli genus was sufficient to restore normal eCB brain levels, hippocampal neurogenesis and to alleviate depressive-like behaviors. Our findings provide a mechanistic scenario for how chronic stress, diet and gut microbiota dysbiosis generate a pathological feed-forward loop that contributes to despair behavior via the central eCB system.

neuroscience

Innate immune recognition of a bacterial MAMP leads to conditional activation of pro- or anti-inflammatory responses

Microbe-associated molecular patterns (MAMPs) are recognized by pattern recognition receptors (PRRs) of the innate immune system. Flagellin, the primary component of bacterial flagella, is recognized by membrane TLR5 and cytoplasmic NLRC4 receptors, which promote a vigorous pro-inflammatory response typically associated with bacterial infection. However, herein, we report that the nature of the flagellin-induced response is highly dependent on the physiological state of the tissue. Specifically, in the steady state, epithelial cell detection of flagellin orchestrates an anti-inflammatory response mediated by IL-33-dependent type 2 regulatory T cells while, in the context of injury, it induces a pro-inflammatory response mediated by myeloid cells, IL-18 and Th17 cells. Likewise, in the absence of infection, bacterial symbionts expressing high levels of flagellin induce a type 2 response. These data demonstrate that, depending on the inflammatory state of the milieu, MAMPs can function both as immunogens or tolerogens.

immunology