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Evaluation of the Potential of Fungal and Plant Laccases for Active-Packaging Applications

机译:真菌和植物漆酶用于主动包装应用的潜力评估

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Laccases from Trametes versicolor (TvL), Myceliophthora thermophila (MtL), and Rhus vernicifera (RvL) were investigated with regard to their potential utilization as oxygen scavengers in active packages containing food susceptible to oxidation reactions. The substrate selectivity of the laccases was investigated with a set of 17 reducing substrates, mainly phenolic compounds. The temperature dependence of reactions performed at low temperatures (4—31 °C) was studied. Furthermore, the laccases were subjected to immobilization in a latex/clay matrix and drying procedures performed at temperatures up to 105 °C. The results show that it is possible to immobilize the laccases with retained activity after dispersion coating, drying at 75—105 °C, and subsequent storage of the enzyme-containing films at 4 °C. TvL and, to some extent, MtL were promiscuous with regard to their reducing substrate, in the sense that the difference in activity with the 17 substrates tested was relatively small. RvL, on the other hand, showed high selectivity, primarily toward substrates resembling its natural substrate urushiol. When tested at 7 °C, all three laccases retained >20% of the activity they had at 25 °C, which suggests that it would be possible to utilize the laccases also in refrigerated food packages. Coating and drying resulted in a remaining enzymatic activity ranging from 18 to 53%, depending on the drying conditions used. The results indicate that laccases are useful for active-packaging applications and that the selectivity for reducing substrates is an important characteristic of laccases from different sources.
机译:研究了来自Trametes versicolor(TvL),嗜热Myceliophthora thermophila(MtL)和Rhus vernicifera(RvL)的漆酶在含有易氧化反应食品的活性包装中作为氧气清除剂的潜在用途。用一组17种还原性底物(主要是酚类化合物)研究了漆酶的底物选择性。研究了低温(4-31°C)下反应的温度依赖性。此外,将漆酶固定在乳胶/粘土基质中,并在高达105℃的温度下进行干燥程序。结果表明,在分散涂布,在75-105°C下干燥以及随后将含酶膜在4°C下保存后,可以将漆酶固定下来并保持活性。就其还原底物而言,TvL和某种程度上的MtL是混杂的,从某种意义上说,与所测试的17种底物的活性差异相对较小。另一方面,RvL表现出高选择性,主要是针对类似于其天然底物漆酚的底物。在7°C下测试时,所有三种漆酶在25°C下的活性均保持> 20%,这表明也可以在冷藏食品包装中使用漆酶。涂布和干燥导致剩余的酶活性在18%至53%之间,具体取决于所用的干燥条件。结果表明漆酶可用于主动包装应用,并且减少底物的选择性是来自不同来源的漆酶的重要特征。

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