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Impact of bioactive packaging systems based on EVOH films and essential oils in the control of aflatoxigenic fungi and aflatoxin production in maize

机译:基于EVOH薄膜和香精油的生物活性包装系统在控制玉米中黄曲霉毒素真菌和黄曲霉毒素生产中的作用

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摘要

Aspergillus flavus and A. parasiticus are the most common fungal species associated with aflatoxin (AF) contamination of cereals, especially maize, and other agricultural commodities. AFB1, the most frequent and toxic metabolite, is a powerful hepatotoxic, teratogenic and mutagenic compound. Effective strategies to control these fungal species and AFs in food and feed are required. Active packaging film containing essential oils (EO) is one of the most innovative food packaging concepts. In this study, ethylene-vinyl alcohol (EVOH) copolymer films incorporating EO from Origanum vulgare (ORE), Cinnamomum zeylanicum (CIN) or their major active constituents, carvacrol (CAR) and cinnamaldehyde (CINHO), respectively, were developed and assayed to control growth of A. flavus and A. parasiticus and AF production in maize grains under different aw and temperature regimens. EO doses assayed in cultures were in the range 0.25–4.0 mg/Petri dish. The factors aw, temperature, type of EVOH-EO film and fungal species significantly influenced the ED50 values of all assayed films. Growth rate (GR) of both species was usually higher at 0.99 than at 0.96 aw and at 37 °C than at 25 °C. However, the contrary was found with regard to AF production. The order of efficacy of EVOH-EO films to control growth of both species and AF production was EVOH-CINHO > EVOH-CAR > EVOH-ORE > EVOH-CIN. The effective dose (ED50) (mg EO/plate) for EVOH-CINHO and EVOH-CIN films against A. flavus were in the ranges of 0.125 and 2.475–3.500 and against A. parasiticus in the ranges of 0.121–0.133 and 2.275–3.625, respectively. Under the assayed conditions, the ED90 for EVOH-CINHO film were 0.22–0.23 mg/plate for both species. It was the most effective bioactive film to control fungal growth (vapour phase) and AF production, regardless of aw and temperature. This is the first study about the impact that interacting environmental conditions and bioactive EVOH-CINHO, EVOH-ORE, EVOH-CIN EVOH-CAR films have on the growth of aflatoxigenic fungi and on AF production in maize grains.
机译:黄曲霉和寄生曲霉是最常见的真菌种类,与谷物,尤其是玉米和其他农产品的黄曲霉毒素(AF)污染有关。 AFB1是最常见且毒性最高的代谢产物,是一种功能强大的肝毒性,致畸性和致突变性化合物。需要有效的策略来控制食品和饲料中的这些真菌种类和AF。包含精油(EO)的有源包装膜是最具创新性的食品包装概念之一。在这项研究中,分别开发了将牛油树(OREGA),玉米肉桂(CINnamomum zeylanicum(CIN))或其主要活性成分香芹酚(CAR)和肉桂醛(CINHO)掺入EO的乙烯-乙烯醇(EVOH)共聚物薄膜,并对其进行了分析。在不同的温度和温度下,玉米中黄曲霉和寄生曲霉的生长以及AF的产生都受到控制。在培养物中测定的EO剂量为0.25–4.0 mg /培养皿。 aw,温度,EVOH-EO膜的类型和真菌种类等因素显着影响所有测定膜的ED50值。两种物种的生长速率(GR)通常在0.99高于0.96 aw和在37°C高于25°C。然而,关于AF生产发现相反。 EVOH-EO薄膜控制两个物种的生长和AF产生的功效顺序为EVOH-CINHO> EVOH-CAR> EVOH-ORE> EVOH-CIN。 EVOH-CINHO和EVOH-CIN膜对黄曲霉的有效剂量(ED50)(mg EO /板)在0.125和2.475-3.500之间,对寄生曲霉的有效剂量在0.121-0.133和2.275- 3.625。在测定的条件下,两种物质的EVOH-CINHO膜的ED90为0.22-0.23 mg /板。它是控制真菌生长(蒸气相)和AF产生的最有效的生物活性薄膜,而无论aw和温度如何。这是有关环境条件和生物活性EVOH-CINHO,EVOH-ORE,EVOH-CIN EVOH-CAR膜相互作用对黄曲霉毒素真菌生长和玉米粒中AF生产影响的首次研究。

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