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Antimould microbial and plant metabolites with potential use in intelligent food packaging

机译:抗智能食品包装潜在用途的抗炎微生物和植物代谢物

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Moulds food infestation is a heavy dangerous problem for human health and also could generate heavy economic losses. The intelligent packaging using eco-friendly biodegradable biofilm incorporating bioactive natural safe compounds represents a new frontier. This manuscript reports the inhibitory activity of 12 bacterial, fungal and plant metabolites against Penicillium roqueforti and Aspergillus niger. Among them α-costic acid and ungeremine (3 and 12) are the most promising as potential biofungicide against both fungal strains. They inhibited fungal growth by more than 60% respect to the control at 72 h and this activity persisted also at 96 h. Ungeremine showed MIC90 lower than 0.003 mg/mL after 48 h of incubation and of 0.025 mg/mL at 72 h against P. roqueforti. The MIC90 value for A. niger was 0.2 mg/mL at 48 h for both compounds. The α-costic acid showed generally MIC values at 48 and 72 h higher than ungeremine. ? 2017 Informa UK Limited, trading as Taylor & Francis Group.
机译:霉菌食物侵扰是人类健康的严重危险问题,也可能产生沉重的经济损失。 使用环形活性天然安全化合物的生态友好型生物降解生物膜的智能包装代表了一种新的前沿。 该稿件报告了12种细菌,真菌和植物代谢物的抑制活性对Penicillium Roqueforti和曲霉尼日尔。 其中α-成熟酸和未达到的(3和12)是对真菌菌株的潜在生物潜在的最有前景。 它们在72小时的对照方面抑制真菌生长超过60%,并且该活性也持续为96小时。 在孵育48小时后,在孵育48小时后,愈合率显示为0.003mg / ml,对针对roqueforti的72小时,0.025mg / ml。 对于两种化合物,A. niger的MIC90值为48小时。 α-成本型酸通常显示在48和72小时高于未稳定的MIC值。 还 2017年Informa UK Limited,贸易为泰勒&弗朗西斯集团。

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