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Subclinical peripheral inflammation has systemic effects impacting central nervous system proteome in budgerigars
E. Voukali, D. Divín, MG. Samblas, NK. Veetil, T. Krajzingrová, M. Těšický, T. Li, B. Melepat, P. Talacko, M. Vinkler
Language English Country United States
Document type Journal Article
- MeSH
- Central Nervous System * metabolism immunology MeSH
- Cytokines metabolism MeSH
- Lipopolysaccharides * immunology MeSH
- Melopsittacus * immunology MeSH
- Brain metabolism immunology MeSH
- Bird Diseases immunology metabolism MeSH
- Neuroimmunomodulation MeSH
- Neuroinflammatory Diseases immunology MeSH
- Proteome * metabolism MeSH
- Proteomics methods MeSH
- Avian Proteins metabolism genetics MeSH
- Dextran Sulfate * MeSH
- Intestines immunology MeSH
- Inflammation * immunology metabolism MeSH
- Animals MeSH
- Check Tag
- Animals MeSH
- Publication type
- Journal Article MeSH
Regulation of neuroimmune interactions varies across avian species. Little is presently known about the interplay between periphery and central nervous system (CNS) in parrots, birds sensitive to neuroinflammation. Here we investigated the systemic and CNS responses to dextran sulphate sodium (DSS)- and lipopolysaccharide (LPS)-induced subclinical acute peripheral inflammation in budgerigar (Melopsittacus undulatus). Three experimental treatment groups differing in DSS and LPS stimulation were compared to controls. Individuals treated with DSS showed significant histological intestinal damage. Through quantitative proteomics we described changes in plasma (PL) and cerebrospinal fluid (CSF) composition. In total, we identified 180 proteins in PL and 978 proteins in CSF, with moderate co-structure between the proteomes. Between treatments we detected differences in immune, coagulation and metabolic pathways. Proteomic variation was associated with the levels of pro-inflammatory cytokine mRNA expression in intestine and brain. Our findings shed light on systemic impacts of peripheral low-grade inflammation in birds.
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- $a Regulation of neuroimmune interactions varies across avian species. Little is presently known about the interplay between periphery and central nervous system (CNS) in parrots, birds sensitive to neuroinflammation. Here we investigated the systemic and CNS responses to dextran sulphate sodium (DSS)- and lipopolysaccharide (LPS)-induced subclinical acute peripheral inflammation in budgerigar (Melopsittacus undulatus). Three experimental treatment groups differing in DSS and LPS stimulation were compared to controls. Individuals treated with DSS showed significant histological intestinal damage. Through quantitative proteomics we described changes in plasma (PL) and cerebrospinal fluid (CSF) composition. In total, we identified 180 proteins in PL and 978 proteins in CSF, with moderate co-structure between the proteomes. Between treatments we detected differences in immune, coagulation and metabolic pathways. Proteomic variation was associated with the levels of pro-inflammatory cytokine mRNA expression in intestine and brain. Our findings shed light on systemic impacts of peripheral low-grade inflammation in birds.
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