Publication:
Transcriptional changes in dendritic cells underlying allergen specific induced tolerance in a mouse model.

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2022-02-18

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Nuñez, Rafael
Rodriguez, Maria Jose
Palomares, Francisca
Gomez, Francisca
Jabato, Fernando M
Cordoba-Caballero, Jose
Seoane, Pedro
Losada, Jorge
Rojo, Javier
Torres, Maria Jose

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To investigate food allergy-tolerance mechanisms induced through allergen-specific immunotherapy we used RNA-Sequencing to measure gene expression in lymph-node-derived dendritic cells from Pru p 3-anaphylactic mice after immunotherapy with glycodendropeptides at 2 nM and 5 nM, leading to permanent tolerance and short-term desensitization, respectively. Gene expression was also measured in mice receiving no immunotherapy (anaphylaxis); and in which anaphylaxis could never occur (antigen-only). Compared to anaphylaxis, the antigen-only group showed the greatest number of expression-changes (411), followed by tolerant (186) and desensitized (119). Only 29 genes changed in all groups, including Il12b, Cebpb and Ifngr1. The desensitized group showed enrichment for genes related to chronic inflammatory response, secretory granule, and regulation of interleukin-12 production; the tolerant group showed genes related to cytokine receptor activity and glucocorticoid receptor binding, suggesting distinct pathways for similar outcomes. We identified genes and processes potentially involved in the restoration of long-term tolerance via allergen-specific immunotherapy, representing potential prognostic biomarkers.

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MeSH Terms

Allergens
Anaphylaxis
Animals
Antigens, Plant
CCAAT-Enhancer-Binding Protein-beta
Dendritic Cells
Desensitization, Immunologic
Disease Models, Animal
Food Hypersensitivity
Gene Expression Regulation
Glycopeptides
Humans
Immune Tolerance
Interleukin-12
Interleukin-12 Subunit p40
Lymph Nodes
Mice
Plant Proteins
RNA-Seq
Receptors, Interferon

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