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Peptide Characterization and Functional Stability of a Partially Hydrolyzed Whey-Based Formula over Time
Tristan Bourdeau1, Michael Affolter2, Lénaïck Dupuis3
1Gastrointestinal Health Department, Nestlé Institute of Health Sciences, Nestlé Research, Société des Produits Nestlé S.A., Vers-chez-les-Blanc, 1000 Lausanne, Switzerland.
Insights
A specific partially hydrolyzed whey infant formula (pHF-W1) consistently reduces allergy risk by altering peptide composition and inducing oral tolerance. Not all hydrolyzed whey formulas offer the same benefits.
Area of Science:
- Food Science and Technology
- Immunology
- Pediatric Nutrition
Background:
- Human clinical trials indicate a specific partially hydrolyzed whey infant formula (pHF-W) reduces atopic dermatitis risk in infants.
- Conflicting results exist in meta-analyses of different partially hydrolyzed whey formulas (pHF-W).
Purpose of the Study:
- To investigate the molecular composition and functional properties of a specific pHF-W (pHF-W1).
- To assess the manufacturing process stability of pHF-W1 over time.
- To compare pHF-W1 with other pHF-Ws regarding allergenicity and oral tolerance induction.
Main Methods:
- Size exclusion chromatography for peptide molecular weight (MW) analysis.
- Rat basophil degranulation assay for beta-lactoglobulin (BLG) allergenicity assessment.
- Preclinical oral tolerance induction model and mass cytometry for peptide sequencing and HLA binding analysis.
Main Results:
- pHF-W1 demonstrated conserved peptide size, allergenicity reduction, and oral tolerance induction across production batches.
- The median MW of pHF-W1 was 800 ± 400 Da, with significant reduction in BLG-specific IgE levels.
- Peptide composition varied significantly between different pHF-Ws, and not all reduced allergenicity or induced oral tolerance effectively.
Conclusions:
- Not all partially hydrolyzed whey infant formulas exhibit consistent peptide size distribution, reduced allergenicity, or oral tolerance induction capabilities.
- Specific peptide profiles generated during manufacturing influence functional properties and allergenic potential.
- The distinct peptide composition of pHF-W1 contributes to its observed benefits in allergy prevention.
Abstract:
Human clinical trials have shown that a specific partially hydrolyzed 100% whey-based infant formula (pHF-W) reduces AD risk in the first yeast of life. Meta-analyses with a specific pHF-W (pHF-W1) confirm a protective effect while other meta-analyses pooling different pHF-W show conflicting results. Here we investigated the molecular composition and functional properties of the specific pHF-W1 as well as the stability of its manufacturing process over time. This specific pHF-W1 was compared with other pHF-Ws. We used size exclusion chromatography to characterize the peptide molecular weight (MW), a rat basophil degranulation assay to assess the relative level of beta-lactoglobulin (BLG) allergenicity and a preclinical model of oral tolerance induction to test prevention of allergic sensitization. To analyze the exact peptide sequences before and after an HLA binding assay, a mass cytometry approach was used. Peptide size allergenicity and oral tolerance induction were conserved across pHF-W1 batches of production and time. The median MW of the 37 samples of pHF-W1 tested was 800 ± 400 Da. Further oral tolerance induction was observed using 10 different batches of the pHF-W1 with a mean reduction of BLG-specific IgE levels of 0.76 log (95% CI = -0.95; -0.57). When comparing pHF-W1 with three other formulas (pHF-W2 3 and 4), peptide size was not necessarily associated with allergenicity reduction in vitro nor oral tolerance induction in vivo as measured by specific IgE level (p < 0.05 for pHF-W1 and 2 and p = 0.271 and p = 0.189 for pHF-W3 and 4 respectively). Peptide composition showed a limited overlap between the formulas tested ranging from 11.7% to 24.2%. Furthermore nine regions in the BLG sequence were identified as binding HLA-DR. In conclusion, not all pHF-Ws tested have the same peptide size distribution decreased allergenicity and ability to induce oral tolerance. Specific peptides are released during the different processes used by different infant formula producers.
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