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April 3, 2026Foods2 citationsOpen Access

The Preserving Effect of a Lemon Essential Oil‒Rutin‒Chitosan Composite Coating on Seasoned White Snakehead Fillets and Dynamic Changes in Metabolites

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JHJiaxin HanTCTianpeng ChenXJXiaolei Jiao

Key Points

  • The research aims to evaluate the efficacy of a lemon essential oil-rutin-chitosan composite coating in preserving seasoned white snakehead fillets and how it affects metabolite changes.
  • Applied a lemon essential oil-rutin-chitosan composite coating on seasoned white snakehead fillets.
  • Evaluated microbial growth, pH levels, and spoilage indicators like TVB-N and TBARS.
  • Used untargeted metabolomics to analyze 2271 metabolites in treated fillets.
  • Performed KEGG enrichment analysis to identify affected metabolic pathways.
  • The composite coating significantly suppressed microbial growth and delayed spoilage by extending shelf life by 5 days.
  • Observed decreases in pH, total volatile basic nitrogen, and TBARS.
  • Identified differentially abundant metabolites mainly related to amino acids, organic acids, and glycerophospholipids.
  • Noted changes in fatty acid metabolism, enhancing cellular membrane stability and antioxidant defenses.

Abstract

In this study, we investigated the preservation efficacy of a lemon essential oil-rutin-chitosan (CS-LEO/NE-R) composite coating on seasoned white snakehead fillets and systematically evaluated dynamic metabolite changes via untargeted metabolomics. The results demonstrated that the composite coating significantly (p < 0.05) suppressed microbial proliferation while delaying increases in pH, total volatile basic nitrogen (TVB-N), and thiobarbituric acid reactive substances (TBARS), thereby extending the microbial spoilage threshold by 5 days. Untargeted metabolomics identified 2271 metabolites, with differentially abundant metabolites predominantly involving amino acids and their derivatives, organic acids and their derivatives, and glycerophospholipids. KEGG enrichment analysis suggested that the composite coating maintained cellular membrane stability and was associated with alterations in glycerophospholipid, arachidonic acid, and linoleic acid metabolism pathways linked to membrane integrity, enhanced antioxidant defences, and regulation of energy metabolism homeostasis. Concurrent enrichment of α-linolenic acid metabolism further pointed to altered fatty acid metabolism, consistent with reduced lipid peroxidation product accumulation.

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Cite This Study

Han et al. (2026) studied this question.

synapsesocial.com/papers/69cf5f645a333a821460e907https://doi.org/10.3390/foods15071184
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