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Effects of high-intensity ultrasound on aggregate states of alkaline-extracted silver carp protein: Correlating mechanisms of structural disruption and functional enhancement

Research output: Contribution to journalArticlepeer-review

Abstract

This study systematically investigated the mechanism of high-intensity ultrasound (HIU, 400 W) modification on alkaline-extracted silver carp protein (AP). Short-time HIU treatment (3–10 min) effectively dissociated AP aggregates and reduced particle size. Structurally, HIU induced unfolding of the α -helical structure in the myosin tail, promoting exposure of hydrophobic groups and active sulfhydryl residues, thereby increasing solubility to 85%. Functionally, emulsifying activity index (EAI) and emulsifying stability index (ESI) increased by 60.4% and 14.3%, respectively; gel strength enhanced nearly fourfold, and water-holding capacity (WHC) improved by approximately 95%. This study reveals the synergistic behavior between alkaline extraction and HIU: the previous conformational loosening during alkaline treatment offers the “preliminary space” for the subsequent “deagglomeration-activation” action of ultrasound to restructure silver carp protein from aggregated states to molecular level, which offers new technical route and theoretical support to obtain highly functional fish protein products.

Original languageEnglish
Article number149407
JournalFood Chemistry
Volume516
DOIs
StatePublished - Jul 1 2026

Bibliographical note

Publisher Copyright:
© 2026 Elsevier Ltd.

Funding

This study was financially supported by the National Key Research and Development Plan Project ( 2021YFD2100404 ) and the Agriculture Research System of China project ( CARS-08-G19 ).

FundersFunder number
National Key Basic Research and Development Program of China2021YFD2100404
Agriculture Research System of ChinaCARS-08-G19

    Keywords

    • Alkaline-extraction
    • High-functionality protein
    • High-intensity ultrasound
    • Silver carp protein
    • Structural modification

    ASJC Scopus subject areas

    • Analytical Chemistry
    • Food Science

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