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Updated: May 6, 2026

Tissue Triage and Freezing for Models of Skeletal Muscle Disease
Published on: July 15, 2014
Synergistic frozen storage-thermal processing drives tilapia muscle quality deterioration via protein structural
Gaigai Niu1, Xingyang Liao1, Jialu Wu1
1College of Food Engineering, Laboratory of Beibu Gulf Marine Product Healthy Aquaculture and Green Processing, Guangxi Zhuang Autonomous Region Engineering Research Center of Marine Food Nutrition and Processing Technology Innovation, Beibu Gulf University, Qinzhou 535011, China.
Abstract:
This study elucidates the synergistic deterioration of tilapia muscle quality during frozen storage (0-120 days) and thermal processing (3-9 min), identifying critical thresholds for quality preservation. Prolonged freezing (>60 days) and extended heating (>5 min) synergistically amplified texture loss, umami depletion, and protein structural damage (α-helix disruption, β-sheet gain), exceeding additive effects. Short heating (≤5 min) mitigated freeze-induced texture degradation and preserved umami dominance, while extended heating triggered irreversible protein aggregation and bitterness. Mechanistically, ice-crystal-induced myofibrillar weakening during freezing was amplified by thermal processing, accelerating hydrophobic exposure and matrix collapse. These findings establish ≤60-day storage and ≤5-min heating as pivotal thresholds to optimize frozen aquatic product processing, offering actionable guidelines for industrial quality control.
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