Cerebral ischaemic stroke results in altered mucosal IgA responses and host-commensal microbiota interactions.
Hurry, M.; Wong, R.; Diaz-Marugan, L.; De Leon, B.; Benakis, C.; Waisman, A.; Allan, S. M.; Lawrence, C. B.; Brough, D.; Hepworth, M. R.
Show abstract
Stroke is a devastating neurological event with a high risk of mortality, but also results in long-term sequalae in survivors that extend beyond the central nervous system. Notably, these include gastrointestinal dysfunction and alterations in the commensal microbiota in both patients and mouse models, which have been suggested to contribute to secondary infection and poor outcome following stroke. Strikingly changes in commensal microbial community composition occur rapidly in both humans and animal models following stroke and correlate with disease severity. Despite these observations the underpinning mechanisms that drive alterations in the microbiota post-stroke remain poorly understood. The gastrointestinal tract is home to a complex network of tissue-resident immune cells that act constitutively to maintain microbial community and prevent bacterial-driven inflammation. Here we demonstrate that mice subjected to ischaemic stroke exhibit alterations in the intestinal immune system, most notably in antibody secreting B cells and the production of Immunoglobulin A (IgA) - a major effector response against commensal microbes. Mice lacking secretory IgA binding to commensal bacteria exhibit a partial reversion of stroke-induced changes in microbiota composition. Notably we also report increases in B cell and IgA-producing plasma cell frequencies in the brain and meninges following stroke. Together these findings demonstrate stroke is associated with perturbations in antibody producing immune responses both in mucosal tissues and the CNS following stroke, which in part explain stroke-induced changes in the intestinal microbiota. A mechanistic understanding of the immunological basis of stroke-associated pathologies in the periphery may open new avenues to manage the secondary complications and long-term prognosis of patients suffering from neurological disease.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- A leaky gut dysregulates gene networks in the brain associated with immune activation, oxidative stress, and myelination in a mouse model of colitis 95%
- Pericyte ablation causes hypoactivity and reactive gliosis in adult mice 93%
- WITHDRAWN: Spatial enrichment of the type 1 interferon signature in the brain of a neuropsychiatric lupus murine model 93%
Similar papers in this journal
- Maternal γδ T Cells Shape Offspring Pulmonary Type-2 Immunity In A Microbiota-Dependent Manner 93%
- Mucolytic bacteria license pathobionts to acquire host-derived nutrients during dietary nutrient restriction 93%
- Lysophosphatidic acid-mediated GPR35 signaling in CX3CR1+ macrophages regulates the intestinal cytokine milieu 93%
Similar papers in this journal
- A network of CD163+ macrophages monitors enhanced permeability at the blood-dorsal root ganglion barrier 94%
- Epithelial antigen presentation controls commensal-specific intraepithelial T-cells in the gut 94%
- Spatiotemporal single cell transcriptomic analyzis of human gut macrophages revealsmultiple functional and niche-specific subsets 93%
Similar papers in this journal
- Gut microbiota transplantation drives the adoptive transfer of colonic genotype-phenotype characteristics between mice lacking catestatin and their wild type counterparts 94%
- Psychological stress disrupts intestinal epithelial cell function and mucosal integrity through microbe and host-directed processes 93%
- A history of repeated antibiotic usage leads to microbiota-dependent mucus defects 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.