bioRxiv Science⌕ Search

Biology subjects

Richardson, J. P.

Publications and source records attributed to Richardson, J. P..

2 recordsLinked to original sources

The IL-1 Family Controls Acute Mucosal Fungal Infection and Mucosal-Systemic Dissemination.

Candida albicans is a major opportunistic pathogen in humans that is capable of breaching mucosal barriers and causing severe systemic infections with high mortality. How the host controls mucosal infection and prevents dissemination remains unclear but is essential for improving disease outcomes. Here, we demonstrate that C. albicans induces specific IL-1 family members, which are critical for initiating mucosal protection by controlling antimicrobial peptides, IL-17, and neutrophil responses. Loss of combined IL-1 family signalling led to severe mucosal C. albicans infection, which was eventually resolved by a potent neutrophil response. However, in neutropenic conditions (a key risk patient factor) abolishing IL-1 family signalling resulted in C. albicans dissemination, predominantly to the liver, mirroring clinical disease and leading to mortality. This study highlights the IL-1 family as a key initiator of mucosal immunity, restricting mucosal invasion and cooperating with neutrophils to prevent life- threatening systemic infections.

microbiology↗

Bacterial suppression of intestinal fungi via activation of human gut γδ T-cells

Gut symbionts condition mucosal immunity to resist infection by enteropathogens, but the specific microbes and mechanisms involved differ significantly between host species. In higher primates, bacterial metabolite HMB-PP is sensed by a specialized population of V{gamma}9V{delta}2+T-cells, which we now report can potently suppress growth of endogenous fungi in human intestinal organ cultures. In healthy intestine, HMB-PP-stimulated V{delta}2+T-cells restricted outgrowth of keystone fungus Candida albicans via a mechanism that required IL-22. In contrast, Crohns disease (CD) patients with reduced V{delta}2+T-cell numbers displayed outgrowth of C. albicans strains that readily formed toxin-producing filaments, triggered neutrophil extracellular traps, and induced macrophage IL-1{beta} release ex vivo. Genomic and proteomic analysis of the Candida isolates suggested increased tissue adhesion of CD-derived strains, which rapidly invaded the gut barrier in an intestine-on-a-chip model. These data reveal that bacterial activation of V{delta}2+T-cells suppresses fungal pathobionts in human gut via an IL-22-dependent mechanism that is dysregulated in CD.

immunology↗