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Characterization of pea starch-guar gum biocomposite edible films enriched by natural antimicrobial agents for active food packaging

机译:豌豆淀粉 - 瓜尔胶生物复合食用薄膜的特征富含天然抗微生物剂的活性食品包装

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摘要

Antimicrobial activity of epigallocatechin-3-gallate (EGCG) and two native Australian plants blueberry ash (BBA) fruit and macadamia (MAC) skin extracts against nine pathogenic and spoilage bacteria and seven strains of fungi, using an agar well diffusion assay were investigated. The minimum inhibitory concentrations (MIC) of these compounds were calculated using 96-well microtiter plates method. Finally, active antimicrobial packaging films were prepared by incorporation of EGCG, BBA and MAC extracts at 1-, 2-, 3-, and 4-fold of their correspondence MIC values into edible films based on pea starch and guar gum (PSGG). The antimicrobial activity of films was investigated against target microorganisms by agar disc diffusion technique and quantified using the viable cell count assay. Among the test microorganisms, Salmonella typhimurium and Rhizopus sp. were the most resistance to active films. Films containing EGCG showed the highest activity against all test strains. As the concentration of compounds increased higher than 2 × MIC, the mechanical characteristics of the films were affected considerably. The results indicated that EGCG-PSGG, BBA-PSGG and MAC-PSGG films can be used as active food packaging systems for preserving food safety and prolonging the shelf-life of the packaged food.
机译:研究了使用琼脂孔扩散测定的抗蛋白酶(EGCG)和两种原生澳大利亚植物蓝莓灰(BBA)果实和澳洲菌(Mac)皮肤提取物的抗微生物植物蓝莓灰(BBA)皮肤提取物。使用96孔微量滴定板法计算这些化合物的最小抑制浓度(MIC)。最后,通过在基于豌豆淀粉和瓜尔胶(PSGG)的可食用薄膜中,在1-,2-,3-和4倍的eGCG,BBA和MAC提取物中加入到可食用薄膜中来制备活性抗微生物包装薄膜。通过琼脂盘扩散技术对靶微生物进行抗微生物活性并使用活细胞计数测定量化。在试验微生物中,沙门氏菌毛刺和根瘤菌SP。是对活性膜的最抗性。含有EGCG的薄膜显示出对所有测试菌株的最高活动。随着化合物的浓度增加高于2×MIC,薄膜的机械特性大大影响。结果表明,EGCG-PSGG,BBA-PSGG和MAC-PSGG薄膜可用作有源食品包装系统,用于保存食品安全性并延长包装食品的保质期。

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