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Oregano and lavender essential oils as antioxidant and antimicrobial additives of biogenic gelatin films

机译:牛至和薰衣草精油作为生物明胶膜的抗氧化剂和抗菌添加剂

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摘要

The chemical composition of the essential oils obtained by hydrodistillation from fully-formed, dried oregano leaves (Origanum vulgareOriganum vulgare) and lavender leaves and flowers (Layandula officinalis) were analyzed by GC/MS. The effectiveness of oregano (OEO) and lavender (LEO) essential oils and a mixture LEO:OEO (50:50) in inhibiting Escherichia coli and Staphylococcus aureus growth were determined. Both essential oils inhibited the growth of the microorganisms tested, being more sensitive to gram-positive bacteria. OEO yielded the lowest values of minimum inhibitory concentration (MICLEO = 1600-1800 ppm vs. MICLEO = 2000 ppm against E. coli; MICOEO = 800-900 ppm vs. MICLEO = 1000-1200 ppm against S. aureus), due to the higher content of phenolic compound, which also provides antioxidant capacity (IC50(OEO) = 297 +/- 89 ppm vs. IC50(LEO) 6000 ppm). Mixture results indicated an antagonist antimicrobial effect between OEO and LEO. Gelatin-based films added with OEO or LEO, were prepared by casting (2000-6000 ppm). Mechanical, optical and water vapor barrier properties were determined to observe film functionality. OEO effect on the functional properties of gelatin films was not significant. LEO, in the highest concentration analyzed, promotes a slight change in water vapor permeability of Ge-based films (1.46 x 10(-13) to 6.8 x 10(-14) Kg.m/Pa.s.m(2)), due to its high hydrophobic nature. Oregano containing gelatin films exhibited the highest antimicrobial and antioxidant properties. (C) 2015 Elsevier B.V. All rights reserved.
机译:通过GC / MS分析了从完全干燥的牛至叶(牛至)和薰衣草叶和花(Layandula officinalis)中加氢蒸馏得到的精油的化学成分。确定了牛至(OEO)和薰衣草(LEO)精油以及LEO:OEO(50:50)混合物抑制大肠杆菌和金黄色葡萄球菌生长的有效性。两种精油均能抑制所测试微生物的生长,对革兰氏阳性细菌更敏感。 OEO的最低抑菌浓度最低(MICLEO = 1600-1800 ppm vs. MICLEO = 2000 ppm对大肠杆菌; MICOEO = 800-900 ppm vs. MICLEO = 1000-1200 ppm对金黄色葡萄球菌),原因是更高的酚类化合物含量,还具有抗氧化能力(IC50(OEO)= 297 +/- 89 ppm,而IC50(LEO) 6000 ppm)。混合结果表明,在OEO和LEO之间有拮抗抗菌作用。通过流延(2000-6000 ppm)制备添加有OEO或LEO的明胶基薄膜。确定机械,光学和水蒸气阻隔性能以观察膜功能。 OEO对明胶薄膜功能特性的影响不明显。 LEO在最高分析浓度下会促进Ge基薄膜的水蒸气渗透性略有变化(1.46 x 10(-13)至6.8 x 10(-14)Kg.m / Pa.sm(2))其高疏水性。含牛至的明胶薄膜具有最高的抗微生物和抗氧化性能。 (C)2015 Elsevier B.V.保留所有权利。

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