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Enhanced antifungal activity of michelia oil on the surface of bamboo paper packaging boxes using helium-neon (HeNe) laser and its application to brown rice snack bar

机译:使用氦 - 氖(HENE)激光及其在糙米小吃栏上的竹纸包装箱表面上增强米塞利亚油的抗真菌活性

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The objective of this research is to evaluate the antifungal activity of michelia oil (Michelia alba) and its main components (linalool and caryophyllene) at concentrations of 300-500 mg g(-1) againsethe growth of Aspergillus niger, Aspergillus flavus, Penicillium sp., Rhizopus sp., Fusarium sp. and Cladosporium sp. on the surface of bamboo paper packaging boxes. Next, Helium-Neon (He-Ne) laser operating at 543, 594, 604, 612, and 633 nm for 1 min was used to enhance the antifungal activity of these additives. A spore suspension of each mold (7log(10) CFU ml(-1)) was inoculated on pieces of treated bamboo paper. Visible mycelium growth of all molds on treated bamboo paper compared to control specimens was to calculate minimum inhibitory concentration (MIC). The inhibitory period of michelia oil and linalool in a bamboo paper box with and without laser against natural mold infections on brown rice snack bars was further examined for 8 weeks at 25 degrees C and 100% RH. The MIC values of michelia oil and linalool with laser treatment were 300 mg g(-1) and 150 mg g(-1), respectively. Without laser treatment, no MICs were found at the maximum concentration (500 mg g(-1)). Therefore, linalool was shown to be a stronger inhibitor than the essential oil after laser treatment and should be the key factor in boosting the antifungal activity of michelia oil. In addition, the MICs showed the capability of bamboo paper boxes treated with michelia oil and linalool, with laser treatment to protect against mold growth on snack bars for at least 5-7 weeks in comparison with the control (3 days) during storage at accelerated conditions (25 degrees C and 100% RH). (C) 2016 Elsevier Ltd. All rights reserved.
机译:本研究的目的是评估米其利亚油(Michelia Alba)及其主要成分(Linalool和Caryophyllene)的抗真菌药活性,浓度为300-500mg g(-1)曲霉,曲霉属植物黄酮,青霉素sp 。,Rhizopus sp。,fusarium sp。和囊孢子sp。在竹纸包装盒的表面上。接下来,使用543,594,604,612和633nm的氦 - 氖(He-Ne)激光器1分钟用于增强这些添加剂的抗真菌活性。将每个模具的孢子悬浮液(7次(10)CFU ml(-1))接种在处理过的竹纸上。与对照样本相比,处理竹纸上所有模具的可见菌丝体生长是计算最小抑制浓度(MIC)。在25℃和100%RH下进一步检查棕色纸箱中的竹纸箱中的孤岛纸箱中的竹纸箱和Linalool的抑制周期,并在糙米小吃杆上进一步检查8周8周。具有激光处理的Michelia油和Linalool的MIC值分别为300mg g(-1)和150mg(-1)。如果没有激光处理,则在最大浓度下发现麦克风(500mg(-1))。因此,激光治疗后,Linalool被证明是一种比精油更强的抑制剂,并且应该是促进米塞利亚油的抗真菌活性的关键因素。此外,MICS表明,用Michelia Oil和Linalool治疗的竹纸盒的能力,激光治疗,以防止在加速期间的对照(3天)进行小吃杆的模具生长至少5-7周条件(25℃和100%RH)。 (c)2016 Elsevier Ltd.保留所有权利。

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