4.7 Article

Effect of sodium alginate/phosphate-stabilized amorphous calcium carbonate nanoparticles on chitosan membranes

期刊

FOOD BIOSCIENCE
卷 46, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.fbio.2022.101570

关键词

Calcium carbonate nanoparticles; Sodium alginate; Chitosan membranes; Crosslinking mechanism; Controlled release properties; Food fresh-keeping film

资金

  1. National Natural Science Foundation of China [31700689]
  2. Natural Science Foundation of Shanxi Province [201901D111115]
  3. Transformation of Scientific and Technological Achievements Programs of Higher Education In-stitutions in Shanxi [2020CG015]
  4. Key Technology Research and Development Plan of Jinzhong City in Shanxi [Y201022]
  5. Liuwei Zhai Food Research Institute, Taiyuan University of Technology [213020310-J]

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In this study, CS composite membranes with excellent application value in the biological field were prepared using ACCP and Alginate/ACCP nanoparticles. The addition of nanoparticles improved the physical and chemical properties of CS films, and enhanced their UV blocking ability, water resistance, and water vapor blocking ability. The composite membranes also exhibited antibacterial and fresh-keeping effects.
Biodegradable chitosan (CS) films can meet the demand for sustainable development. However, the performance of pure CS membrane still exists a particular gap compared with the traditional film. Inorganic nanomaterials with the controllable release are added to improve its physical and chemical properties. Herein, a series of CS/ phosphate-stabilized amorphous calcium carbonate (CS/ACCP) and CS/sodium alginate/ACCP (CS/Alginate/ ACCP) composite films were prepared by the flow method. The effects of ACCP and Alginate/ACCP nanoparticles on the physical and chemical properties of the composite membrane were investigated. The results showed that the composite nanoparticles could significantly improve CS film's compactness, hydrophobicity, and mechanical properties and enhance its ultraviolet (UV) blocking ability, water resistance, and water vapor blocking ability. When the number of nanoparticles was 8%, the mechanical properties of the CS composite membrane reached optimum value, and the comprehensive performance was better. In addition, the controlled-release properties of CS composite membranes were also studied, and the antioxidant, antibacterial, biocompatibility, and fresh-keeping effects of the composite membranes were explored. The results indicated that the CS composite mem-branes had not only excellent bacteriostatic (72%) properties (Escherichia coli) but also presented well fruit preservation (15 days) properties (sugar orange). In particular, the controlled release range of CS composite membrane at 12 h was between 30% and 90%, which provided a theoretical basis for its use as an edible membrane. Therefore, based on ACCP and Alginate/ACCP nanoparticles, CS composite membranes with more excellent application value in the biological field were prepared through further optimization design.

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