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Fabrication and Antifungal Activity of Cellulose Acetate-Based Fibers Encapsulating Natural Neem Seed Oil

机译:纤维素纤维的制造和抗真菌活性包封天然NeeM籽油的纤维

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Due to an attempt to increase the economic value of Thai neem (Azadirachta indica A. Juss. var. siamensis Valeton) as well as a concern on biosafety and environmental friendliness of a material that can be used for shelf-life extension of foods and perishable crops, this work was conducted to evaluate the antifungal property of NSO (NSO) and to fabricate and investigate the antifungal activity of NSO encapsulated in bio-based fibrous films. Natural cold-pressed NSO was first stabilized in micelles structure of sodium dodecyl sulfate (SDS) and then embedded in a composite matrix of cellulose acetate (CA) and poly(ethylene oxide) (PEO) via needleless electrospinning technique. The effects of SDS and NSO ratios in the electrospinning solution on the micelles size distribution, which in turn influenced the morphology of the e-spun fibers and payload of the encapsulated NSO, were investigated. Morphology of the fiber samples was examined via scanning electron microscopy (SEM). Fibrous films were selected to test for their in vivo antifungal property with wounded-inoculated and healthy tomatoes; Alternaria alternata was chosen as a tested fungus. As indicated by SEM images, an average fiber diameter was 900 nm. The results also showed that as the NSO ratio increased, the fibers tended to exhibit rice-grain-onstring microstructure. Electrospun fibrous film containing 50% NSO exhibited antifungal effect on wounded-inoculated tomatoes at a utilized weight ratio of the film to tomato of 125 mg film/1 kg tomato (in a 100% relative humidity controlled closed chamber).
机译:由于试图提高泰国雷姆的经济价值(Azadirachta juss。var。暹罗·瓦顿顿)以及可用于食品的保质期延伸的物料的生物安全和环境友好性的关注作物,该作品进行了评估NSO(NSO)的抗真菌性,并制造并研究在生物基纤维膜中包封的NSO的抗真菌活性。首先以胶束结构(SDS)的胶束结构稳定天然冷压制的NSO,然后通过无针电纺丝技术嵌入纤维素乙酸纤维素(CA)和聚(环氧乙烷)和聚(环氧乙烷)的复合基质中。研究了SDS和NSO比在胶束尺寸分布上的静电纺丝溶液中的影响,又影响了e-Spun纤维的形态和包封NSO的有效载荷。通过扫描电子显微镜(SEM)检查纤维样品的形态。选择纤维膜以用伤口接种和健康的西红柿测试它们的体内抗真菌性;选择alternaria alternata作为测试的真菌。如SEM图像所示,平均纤维直径为900nm。结果还表明,随着NSO比的增加,纤维倾向于表现出水稻 - 粒子上的微观结构。含有50%NSO的电纺纤维膜以125mg膜/ 1kg番茄的薄膜的使用重量比(在100%相对湿度控制的闭合室中,在伤口接种的西红柿上表现出抗真菌效应。

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