Development of Hybrid Film Based on Carboxymethyl Chitosan-Gum Arabic Incorporated Citric Acid and Polyphenols from Cinnamomum camphora Seeds for Active Food Packaging

被引:0
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作者
Fawze Alnadari
Anthony Pius Bassey
Mohamed Abdin
Mohamed Abdelbaset Salama
Mustapha Muhammad Nasiru
Zhuqing Dai
Yuhang Hu
Xiaoxiong Zeng
机构
[1] Nanjing Agricultural University,Department of Food Science and Engineering, College of Food Science and Technology
[2] Jiangsu Academy of Agricultural Sciences,Institute of Agro
[3] Sana’a University,Product Processing
[4] Food Technology Research Institute,Department of Food Science and Nutrition, Faculty of Agriculture, Food and Environment
关键词
Bioactive compounds; Edible film; Antioxidant; Antimicrobial; Food packaging;
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摘要
In this study, carboxymethyl chitosan with gum Arabic (CG) based novel functional films containing Cinnamomum camphora seeds extract (CCSE) at varying concentrations (0.5, 1.2 and 2% in w/w) were successfully fabricated. Moreover, sixteen phenolic compounds were identified by liquid chromatography and electrospray-ionized quadrupole time-of-flight mass spectrometry (LC-ESI-QTOF-MS) and the most abundant organic acid was citric acid (present at 1062.55 μg/g dry weight in CCSE). The resulting CG-ANC.P film was comprehensively characterized in terms of physicochemical properties, morphological characteristics, molecular properties, melting, and bioactivities properties (antimicrobial, antioxidant and biodegradability). CCSE inclusion into CG resulted in a marked increase (33.01–63.23 MPa) of tensile properties, with optimum thickness. The swelling degree, water solubility, and water vapor permeability were markedly (p < 0.05) reduced from 54.21 to 31.70%, 32.05 to 14.02%, and 3.46 to 1.12 × 10−11 g−1 s−1 Pa−1, respectively. The open control and CG samples showed much higher peroxide values of sunflower oil (69.49 ± 0.68 and 20.15 ± 0.31 mEq/kg, respectively) while CG-CCSE2 exhibited a low value (9.79 ± 0.28 mEq/kg) after 28 days incubation. The CG biodegradable film with the addition of CCSE (2%) was optimal for producing functional films with antioxidant and antibacterial properties.
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页码:3582 / 3597
页数:15
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