Publication:
Transcriptional Profiling of Dendritic Cells in a Mouse Model of Food-Antigen-Induced Anaphylaxis Reveals the Upregulation of Multiple Immune-Related Pathways.

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2018-12-17

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Rodriguez, Maria Jose
Palomares, Francisca
Bogas, Gador
Torres, Maria Jose
Diaz-Perales, Araceli
Rojo, Javier
Plaza-Seron, Maria Del Carmen
Rodriguez-Nogales, Alba
Orengo, Christine
Mayorga, Cristobalina

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Abstract

Much of the knowledge about gene expression during anaphylaxis comes from candidate gene studies. Despite their potential role, expression changes in dendritic cells (DCs) have not been studied in this context using high throughput methods. The molecular mechanisms underlying food-antigen-induced anaphylaxis are investigated using DCs from an animal model. RNA sequencing is used to study gene expression in lymph-node-derived DCs from anaphylactic mice sensitized intranasally with the major peach allergen Pru p 3 during the acute reaction phase, induced intraperitoneally. In total, 237 genes changed significantly, 181 showing at least twofold changes. Almost three-quarters of these increase during anaphylaxis. A subset is confirmed using RT-PCR in a second set of samples obtained from a new batch of mice. Enrichment analysis shows an overrepresentation of genes involved in key immune system and inflammatory processes, including TGF-β signaling. Comparison with a study using anaphylactic human subjects show significant overlap. The findings provide a comprehensive overview of the transcriptional changes occurring in DCs during anaphylaxis and help elucidate the mechanisms involved. They add further weight to the putative role of these cells in anaphylaxis and highlight genes that may represent potential therapeutic targets.

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MeSH Terms

Anaphylaxis
Animals
Antigens, Plant
Dendritic Cells
Female
Food Hypersensitivity
Gene Expression Profiling
Gene Ontology
Humans
Immunoglobulin E
Interleukin-10
Mice
Mice, Inbred BALB C
Plant Proteins
Sequence Analysis, RNA
Up-Regulation

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Keywords

anaphylaxis, dendritic cells, food allergy, lipid transfer proteins, transcriptomics

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