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May 19, 2026LWT0 citationsOpen Access

Evaluation of yellow mealworm (Tenebrio molitor) larvae protein extract as a cryoprotectant for frozen Pacific white shrimp

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PKPhanat KittiphattanabawonCSChodsana SriketSNSitthipong Nalinanon

Key Points

  • This research aims to assess the effectiveness of yellow mealworm larvae protein extract as a cryoprotectant for frozen Pacific white shrimp.
  • Evaluated cryoprotective effects of 0.5% yellow mealworm protein extract (YMPE) versus controls.
  • Conducted proteomic profiling to identify antifreeze protein-like peptides in YMPE.
  • Analyzed shrimp quality over five freeze-thaw cycles and measured weight gain, freezable water content, and enzyme activity.
  • Shrimp treated with 0.5% YMPE showed 5.57% weight gain; freezable water content was 59.67% (P < 0.05).
  • YMPE reduced protein degradation and lysosomal enzyme leakage compared to control (P < 0.05).
  • Microstructural analysis indicated decreased muscle fiber disruption in YMPE-treated shrimp.

Abstract

This study evaluated the application of yellow mealworm ( Tenebrio molitor ) larvae protein extract (YMPE) as a clean-label cryoprotectant for frozen Pacific white shrimp ( Litopenaeus vannamei ), with emphasis on its underlying mechanism. Proteomic profiling identified 12 antifreeze protein-like peptides containing conserved ice-binding motifs (TCTxSxxCxxAx), supporting the cryoprotective potential of YMPE. During dose optimization, shrimp treated with 0.5% YMPE exhibited the highest weight gain (5.57%) and lowest freezable water content (59.67%) (P < 0.05). The cryoprotective efficacy of YMPE was further evaluated over five freeze–thaw cycles in comparison with distilled water and mixed phosphate. YMPE significantly mitigated quality deterioration by enhancing water retention, preserving protein functionality (higher Ca 2+ -ATPase activity), and reducing lysosomal enzyme leakage relative to the control (P < 0.05). Microstructural analysis revealed reduced muscle fiber disruption, characterized by fewer inter-fiber gaps. Mechanistically, YMPE may exert cryoprotective effects through a multimodal mechanism involving ice recrystallization inhibition and formation of a protective protein matrix. Although less effective than mixed phosphate, YMPE consistently improved all quality parameters compared with the control. These findings highlight the potential of insect-derived protein extracts as a novel, biologically based alternative to phosphate additives in seafood processing and provide a foundation for future industrial application. - YMPE contains AFP-like peptides with tandem motifs resembling TmAFP sequences. - YMPE acts as a natural cryoprotectant in frozen shrimp - 0.5% YMPE moderately reduces thawing loss and muscle degradation in frozen shrimp. - Ca 2+ -ATPase activity is better preserved in YMPE-treated shrimp vs. water control. - Cryoprotection of YMPE is lower than phosphate but supports clean-label applications.

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Cite This Study

Kittiphattanabawon et al. (2026) studied this question.

synapsesocial.com/papers/6a0bfdc7166b51b53d379215https://doi.org/10.1016/j.lwt.2026.119533
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