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Int J Biol Macromol ; 277(Pt 1): 134008, 2024 Oct.
Article in English | MEDLINE | ID: mdl-39032879

ABSTRACT

In this study, an active film composed of gallic acid (GA), chitosan (CS), and cellulose nanocrystals (CNC) was prepared using a solution casting method and synergistic photodynamic inactivation (PDI) technology. Characterization of the film showed that the CS-CNC-GA composite film had high transparency and UV-blocking ability. The addition of GA (0.2 %-1.0 %) significantly enhanced the mechanical properties, water resistance, and thermal stability of the film. The tensile strength increased up to 46.30 MPa, and the lowest water vapor permeability was 1.16 × e-12 g/(cm·s·Pa). The PDI-treated CS-CNC-GA1.0 composite film exhibited significantly enhanced antibacterial activity, with inhibition zone diameters of 31.83 mm against Staphylococcus aureus and 21.82 mm against Escherichia coli. The CS-CNC-GA composite film also showed good antioxidant activity. Additionally, the CS-CNC-GA1.0 composite film generated a large amount of singlet oxygen under UV-C light irradiation. It was found that using the CS-CNC-GA1.0 composite film for packaging and storage of oysters at 4 °C effectively delayed the increase in pH, total colony count, and lipid oxidation in oysters. In conclusion, the CS-CNC-GA composite film based on PDI technology has great potential for applications in the preservation of aquatic products.


Subject(s)
Anti-Bacterial Agents , Cellulose , Chitosan , Gallic Acid , Gallic Acid/chemistry , Gallic Acid/pharmacology , Chitosan/chemistry , Cellulose/chemistry , Anti-Bacterial Agents/pharmacology , Anti-Bacterial Agents/chemistry , Antioxidants/chemistry , Antioxidants/pharmacology , Escherichia coli/drug effects , Food Packaging/methods , Staphylococcus aureus/drug effects , Nanoparticles/chemistry , Permeability , Nanocomposites/chemistry , Tensile Strength , Ultraviolet Rays
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