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Bioaccessibility and antioxidant activity of edible-insect protein digests from Tenebrio molitor and Zophobas atratus in an in vitro digestion model

  • Jae Hoon Lee
  • , Yea Ji Kim
  • , Min Cheol Kang
  • , Min Kyung Park
  • , Yun Sang Choi*
  • *Corresponding author for this work
  • Korea Food Research Institute

Research output: Contribution to journalJournal articlepeer-review

Abstract

With the increasing global demand for sustainable protein sources, edible insects are receiving increasing attention because of their nutritional value and environmental benefits. The present study examined the bioaccessibilities and antioxidant activities of peptides from the digesta of edible-insect proteins (Tenebrio molitor and Zophobas atratus larvae) and used an in vitro digestion model to explore their interactions with myeloperoxidase. These proteins exhibited bioaccessibilities superior to that of soy protein and produced digesta with high antioxidant activities. The 10 active peptides present in these digesta were sequenced and shown to strongly bind to myeloperoxidase using molecular docking analysis. Thus, this study demonstrates that edible-insect proteins are highly bioaccessible and produce bioactive peptides with potent antioxidant properties upon digestion, highlighting their potential as functional food ingredients.

Original languageEnglish
Article number103251
JournalFood Chemistry: X
Volume32
DOIs
StatePublished - 2025.12

Keywords

  • Edible-insect proteins
  • In vitro digestion model
  • Molecular docking
  • Peptide

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