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1.
Int J Neonatal Screen ; 9(4)2023 Oct 11.
Article in English | MEDLINE | ID: mdl-37873847

ABSTRACT

The Wilson and Jungner (W&J) and Andermann criteria are meant to help select diseases eligible for population-based screening. With the introduction of next-generation sequencing (NGS) methods for newborn screening (NBS), more inherited metabolic diseases (IMDs) can technically be included, and a revision of the criteria was attempted. This study aimed to formulate statements and investigate whether those statements could elaborate on the criterion of treatability for IMDs to decide on eligibility for NBS. An online Delphi study was started among a panel of Dutch IMD experts (EPs). EPs evaluated, amended, and approved statements on treatability that were subsequently applied to 10 IMDs. After two rounds of Delphi, consensus was reached on 10 statements. Application of these statements selected 5 out of 10 IMDs proposed for this study as eligible for NBS, including 3 IMDs in the current Dutch NBS. The statement: 'The expected benefit/burden ratio of early treatment is positive and results in a significant health outcome' contributed most to decision-making. Our Delphi study resulted in 10 statements that can help to decide on eligibility for inclusion in NBS based on treatability, also showing that other criteria could be handled in a comparable way. Validation of the statements is required before these can be applied as guidance to authorities.

2.
Allergy ; 78(7): 2007-2018, 2023 07.
Article in English | MEDLINE | ID: mdl-36815272

ABSTRACT

BACKGROUND: Understanding differences in sensitization profiles at the molecular allergen level is important for diagnosis, personalized treatment and prevention strategies in allergy. METHODS: Immunoglobulin E (IgE) sensitization profiles were determined in more than 2800 sera from children in nine population-based cohorts in different geographical regions of Europe; north [BAMSE (Sweden), ECA (Norway)], west/central [PIAMA (the Netherlands), BiB (the United Kingdom), GINIplus (Germany)], and south [INMA Sabadell and Gipuzkoa (Spain) and ROBBIC Rome and Bologna (Italy)] using the MeDALL-allergen chip. RESULTS: Sensitization to grass pollen allergen, Phl p 1, and to major cat allergen, Fel d 1, dominated in most European regions whereas sensitization to house dust mite allergens Der p 1, 2 and 23 varied considerably between regions and were lowest in the north. Less than half of children from Sabadell which has a hot and dry climate were sensitized to respiratory allergens, in particular house dust mite allergens as compared to Gipuzkoa nearby with a more humid climate. Peanut allergen Ara h 1 was the most frequently recognized class 1 food allergen in Northern/Western Europe, while the fruit allergens Pru p 3, Act d 1 and 2 were prominent in Southern and Western/Central Europe. Ves v 5-sensitization dominated in North and West/Central Europe. CONCLUSION: We show regional, exposome- and climate-dependent differences in molecular IgE-reactivity profiles in Northern, Western/Central and Southern Europe which may form a molecular basis for precision medicine-based approaches for treatment and prevention of allergy.


Subject(s)
Exposome , Food Hypersensitivity , Hypersensitivity , Hypersensitivity/diagnosis , Hypersensitivity/epidemiology , Allergens , Pollen , Immunoglobulin E
5.
Int J Mol Sci ; 21(16)2020 Aug 11.
Article in English | MEDLINE | ID: mdl-32796496

ABSTRACT

Transepithelial transport of proteins is an important step in the immune response to food allergens. Mammalian meat allergy is characterized by an IgE response against the carbohydrate moiety galactosyl-α-1,3-galactose (α-Gal) present on mammalian glycoproteins and glycolipids, which causes severe allergic reactions several hours after red meat consumption. The delayed reaction may be related to the processing of α-Gal carrying proteins in the gastrointestinal tract. The aim of this study was to investigate how protein glycosylation by α-Gal affects the susceptibility to gastric digestion and transport through the Caco-2 cell monolayer. We found that α-Gal glycosylation altered protein susceptibility to gastric digestion, where large protein fragments bearing the α-Gal epitope remained for up to 2 h of digestion. Furthermore, α-Gal glycosylation of the protein hampered transcytosis of the protein through the Caco-2 monolayer. α-Gal epitope on the intact protein could be detected in the endosomal fraction obtained by differential centrifugation of Caco-2 cell lysates. Furthermore, the level of galectin-3 in Caco-2 cells was not affected by the presence of α-Gal glycosylated BSA (bovine serum albumin) (BSA-α-Gal). Taken together, our data add new knowledge and shed light on the digestion and transport of α-Gal glycosylated proteins.


Subject(s)
Disaccharides/metabolism , Proteins/chemistry , Transcytosis , Animals , Caco-2 Cells , Carbohydrates/chemistry , Cattle , Endosomes/metabolism , Galectin 3/metabolism , Glycosylation , Humans , Pepsin A/metabolism , Protein Transport , Serum Albumin, Bovine/metabolism
6.
J Allergy Clin Immunol Pract ; 8(6): 2027-2034.e2, 2020 06.
Article in English | MEDLINE | ID: mdl-32142962

ABSTRACT

BACKGROUND: The galactose-α1,3-galactose (α-Gal) syndrome (AGS) is a novel form of food allergy. Patients experience delayed severe allergic reactions after mammalian meat consumption due to IgE antibodies directed against the carbohydrate α-Gal present in mammalian meat. The onset of the disease is associated with tick bites. OBJECTIVE: To characterize a cohort of patients with AGS from Sweden on a clinical and serological level, and identify risk factors for disease severity. METHODS: A total of 128 patients with symptoms after mammalian meat intake and IgE to α-Gal were included. Medical examination and diagnosis were made by an allergologist and questionnaires were filled in regarding onset of symptoms, tick exposure, and airborne allergies. Serum IgE reactivity against multiple food and airborne allergens, as well as protein extract from the tick Ixodes ricinus, was measured using ImmunoCAP. RESULTS: The majority of patients were middle aged, with equal gender distribution. Nearly all reported symptoms more than 2 hours after meat consumption. Urticaria (90%) and gastrointestinal symptoms (74%) were most common. Almost half of the patients suffered from anaphylaxis, and α-Gal IgE levels were significantly higher among these patients compared with those without anaphylaxis. Nearly all patients had been tick bitten and 75% had IgE against I. ricinus. More than half of the patients with AGS were atopic, and atopy increased the risk of anaphylaxis with pulmonary manifestations. Only 2 patients belonged to blood group B/AB. CONCLUSION: AGS is an upcoming food allergy where patients report severe symptoms and tick bites. Atopy was found to affect the manifestation of the disease in Swedish patients.


Subject(s)
Food Hypersensitivity , Tick Bites , Allergens , Animals , Food Hypersensitivity/diagnosis , Food Hypersensitivity/epidemiology , Galactose , Humans , Immunoglobulin E , Middle Aged , Sweden/epidemiology , Tick Bites/epidemiology
8.
PLoS One ; 12(6): e0178191, 2017.
Article in English | MEDLINE | ID: mdl-28594834

ABSTRACT

Immunomodulating proteins and peptides are formed during the hydrolysis of cow's milk proteins. These proteins are potential ingredients in functional foods used for the management of a range of immune related problems, both in infants and adults. However, the mechanism behind these effects is unknown. We hypothesize that the interaction of peptides with Toll-like receptors (TLRs) can induce immune effects, since these receptors are known to sample many dietary molecules in the intestine in order to regulate immune effects. To investigate this, we compared the immune effects and TLR activation and inhibition by whey and casein hydrolysates with different hydrolysis levels. We first measured cytokine production in primary peripheral blood mononuclear cells stimulated with either whey, casein, or their hydrolysates. IL-10 and TNFα were induced by whey hydrolysates (decreasing with increasing hydrolysis level), but not by casein hydrolysates. Next, the activation of TLR 2, 3, 5 and 9 receptors were observed by intact and mildly hydrolysed whey proteins only and not by casein hydrolysates in TLR reporter cell lines. Many casein hydrolysates inhibited TLR signaling (mainly TLR 5 and 9). These results demonstrate that the effects of cow's milk proteins on the immune system are protein type and hydrolysis dependent. TLR signaling is suggested as a possible mechanism for differences in effect. This knowledge contributes to a better understanding of the immune effects of hydrolysates and the design of infant formula, and nutrition in general, with specific immunoregulatory effects.


Subject(s)
Immunomodulation , Milk/immunology , Protein Hydrolysates/metabolism , Toll-Like Receptors/metabolism , Adolescent , Animals , Caseins/metabolism , Cattle , Cell Count , Cell Line , Cytokines/biosynthesis , Cytokines/metabolism , Genes, Reporter , Humans , Hydrolysis , Immunomodulation/drug effects , Leukocytes, Mononuclear/metabolism , Ligands , Macrophages/metabolism , Male , NF-kappa B/metabolism , Pentacyclic Triterpenes , Transcription Factor AP-1/metabolism , Triterpenes/pharmacology , Whey Proteins/metabolism
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