1. Epigenetic features of FoxP3 in children with cow’s milk allergy
- Author
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Valentina Del Monaco, Carmen Di Scala, Francesco Salvatore, Margherita Di Costanzo, Roberto Berni Canani, Lorella Paparo, Valeria D'Argenio, Rita Nocerino, Antonio Amoroso, Rosita Aitoro, Linda Cosenza, Paparo, Lorella, Nocerino, Rita, Cosenza, Linda, Aitoro, Rosita, D'Argenio, Valeria, DEL MONACO, Valentina, Di Scala, Carmen, Amoroso, Antonio, DI COSTANZO, Margherita, Salvatore, Francesco, and BERNI CANANI, Roberto
- Subjects
Male ,0301 basic medicine ,Lactobacillus rhamnosus GG ,Short Report ,chemical and pharmacologic phenomena ,Milk allergy ,Biology ,Oral tolerance ,T-Lymphocytes, Regulatory ,Epigenesis, Genetic ,03 medical and health sciences ,0302 clinical medicine ,Genetic ,Food allergy ,Genetics ,medicine ,Humans ,Epigenetics ,Molecular Biology ,Gene ,Transcription factor ,health care economics and organizations ,Genetics (clinical) ,Extensively hydrolyzed casein formula ,Lacticaseibacillus rhamnosus ,Caseins ,Infant ,FOXP3 ,Forkhead Transcription Factors ,hemic and immune systems ,DNA Methylation ,Immunoglobulin E ,medicine.disease ,Infant Formula ,humanities ,Treatment Outcome ,030104 developmental biology ,DNA demethylation ,030228 respiratory system ,DNA methylation ,Immunology ,Female ,Milk Hypersensitivity ,Developmental Biology - Abstract
BACKGROUND: DNA methylation of the Th1 and Th2 cytokine genes is altered during cow's milk allergy (CMA). Forkhead box transcription factor 3 (FoxP3) is essential for the development and function of regulatory T cells (Tregs) and is involved in oral tolerance acquisition. We assessed whether tolerance acquisition in children with IgE-mediated CMA is associated with DNA demethylation of the Treg-specific demethylated region (TSDR) of FoxP3. RESULTS: Forty children (aged 3-18 months) were enrolled: 10 children with active IgE-mediated CMA (group 1), 10 children who outgrew CMA after dietary treatment with an extensively hydrolyzed casein formula containing the probiotic Lactobacillus rhamnosus GG (group 2), 10 children who outgrew CMA after treatment with other formulas (group 3), and 10 healthy controls (group 4). FoxP3 TSDR demethylation and expression were measured in mononuclear cells purified from peripheral blood of the four groups of children. FoxP3 TSDR demethylation was significantly lower in children with active IgE-mediated CMA than in either children who outgrew CMA or in healthy children. Formula selection influenced the FoxP3 TSDR demethylation profile. The FoxP3 TSDR demethylation rate and expression level were correlated. CONCLUSIONS: Tolerance acquisition in children with IgE-mediated CMA involves epigenetic regulation of the FoxP3 gene. This feature could be a new target for preventive and therapeutic strategies against CMA.
- Published
- 2016