AI Article Synopsis

  • * Various physicochemical tests were conducted to evaluate characteristics such as thickness, water content, antioxidant activity, and antimicrobial properties of the developed films.
  • * Results showed that higher concentrations of plant extracts improved the films' properties, particularly those with red grape extract, which exhibited the best antimicrobial activity and other beneficial features, promoting sustainability by utilizing food waste.

Article Abstract

The aim of the research was to produce edible packaging based on chitosan with the addition of various concentrations of extracts of blueberry, red grape and parsley marcs. Packaging was made from extrudate extracts, which were subsequently analyzed by physicochemical methods: zeta-potential, gas barrier properties, thickness, water content, solubility, swelling degree, textural properties, total polyphenol content (TPC), polyphenols by high pressure liquid chromatography (HPLC), antioxidant activity, attenuated total reflectance Fourier-Transform spectroscopy (FTIR), antimicrobial activity and determination of migration of bioactive substances. The results indicate that a higher content of plant extracts have a statistically significant ( < 0.05) influence on properties of experimentally produced edible films. Edible films produced with the highest concentrations of red grapes marc extracts showed the most advantageous properties since antimicrobial activity against were the highest in this kind of produced film. The physical properties of edible films were also improved by the addition of extracts; gas permeability toward oxygen can be defined as advantageous, as can swelling degree, which decreased with higher concentrations of extracts. The research emphasized the possibility to use plant foodstuffs by-products in the production of edible/biodegradable films, helping in the overall sustainability and eco-friendliness of food/package production.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8513039PMC
http://dx.doi.org/10.3390/polym13193388DOI Listing

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