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Influence of Hydrolysis Degree on the Functional Properties of Salmon Byproducts Hydrolysates

Journal of Food Science · 2004 · Vol. 69(8)
Grodji Albarin GbogouriMichel LinderJacques FanniMarie‐Laure Parmentier

Abstract

ABSTRACT: Protein hydrolysates from salmon heads were obtained by enzymatic treatment with Alcalase (r) 2.4L. Response surface methodology (RSM) allowed optimization of temperature, enzyme/substrate, and pH leading to various hydrolysates (11.5% to 17.3% hydrolysis degree [DH]) and protein recovery ranging from 47% to 70%. Size exclusion chromatography of hydrolysates showed that small peptides increased only at high DH. The nitrogen solubility index (NSI) of hydrolysates was higher than 75% over a wide range of pH values, whereas hydrolysates with high DH had the best solubility. Emulsifying capacity, emulsion stability, and fat absorption capacity were better when DH was low.

Protein Hydrolysis and Bioactive PeptidesAquaculture Nutrition and GrowthMeat and Animal Product QualityHydrolysateChemistryChromatographyHydrolysisSolubilityEmulsionEnzymatic hydrolysisResponse surface methodologySubstrate (aquarium)Enzyme
Citations
468
FWCI
2.04
field-weighted impact
References
36
Percentile
86%
vs. same field & year
Citations per year
References
FUNCTIONAL PROPERTIES OF NOVEL PROTEINS: ALFALFA LEAF PROTEIN
Journal of Food Science · 1976 · 476 citations
Official Methods of Analysis of
Analytical Chemistry · 1980 · 59,546 citations
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