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.

Nutrients
|September 28, 2021
PubMed

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.