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首页> 外文期刊>Food and bioprocess technology >Postharvest Quality of Fresh-Cut Carrots Packaged in Plastic Films Containing Silver Nanoparticles
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Postharvest Quality of Fresh-Cut Carrots Packaged in Plastic Films Containing Silver Nanoparticles

机译:含银纳米颗粒的塑料薄膜包装的新鲜胡萝卜的采后质量

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Active food packaging containing antimicrobial additive goes beyond traditional functions of packaging, once it can extend food shelf life maintaining its quality, safety and reducing postharvest losses by controlling food spoilage. Among several antimicrobial additives employed in polymeric films for packaging, metallic nanoparticles outstand due to its facility for synthesis, low-cost of production, and intense antimicrobial properties. In this work, extruded plain films of low-density polyethylene (LDPE) containing silver nanoparticles (AgNPs) embedded in SiO2 and TiO2 carriers (namely MS and MT, respectively) were produced and used as active packaging for maintaining the physicochemical and microbiological quality of carrots (Daucus Carota L. cv. Brasilia). The neat (LDPE) and composite films containing MS and MT were characterized by scanning electron microscopy and permeability to oxygen and used for packaging fresh-cut sliced carrots stored at 10 A degrees C for 10 days. After the storage time, the physicochemical properties of carrots were characterized, while the antimicrobial properties of films and AgNP migration were investigated. Our results revealed that both MT and MS packages showed antimicrobial activity even for films containing low concentration of AgNP. In addition, AgNP antimicrobial activity demonstrated to be carrier-dependent, once MT-LDPE showed improved performance compared to MS-LDPE. Regarding the physicochemical properties of packaged carrot, lower soluble solids and weight loss and higher levels of ascorbic acid were observed for carrots packaged with MT-LDPE films (compared to MS-LDPE), leading to a better postharvest quality conservation. Such differences observed in physicochemical properties of carrots are related to the distinct antimicrobial and film permeability properties for each composite film. In addition, under the conditions employed in this study, AgNP migration from the packages to fresh-cut carrot was not observed, which is highly desirable for food packaging safety, indicating the potential of such active packages for food preservation application.
机译:含有抗微生物添加剂的活性食品包装一旦能够延长食品货架寿命,就可以通过控制食品腐败来维持其质量,安全性并减少收获后损失,从而超越了传统的包装功能。在用于包装的聚合物膜中使用的几种抗菌添加剂中,金属纳米粒子因其易于合成,生产成本低和强大的抗菌特性而脱颖而出。在这项工作中,生产的低密度聚乙烯(LDPE)包含银纳米颗粒(AgNPs)嵌入在SiO2和TiO2载体(分别为MS和MT)中的挤出平整薄膜,并用作活性包装,以保持其理化和微生物质量胡萝卜(Daucus Carota L. cv。巴西利亚)。包含MS和MT的纯净(LDPE)薄膜和复合薄膜通过扫描电子显微镜和透氧性进行表征,并用于包装在10 A摄氏度下储存10天的鲜切胡萝卜片。贮藏一段时间后,对胡萝卜的理化特性进行了表征,同时研究了薄膜的抗菌性能和AgNP的迁移。我们的结果表明,即使对于含有低浓度AgNP的薄膜,MT和MS包装都显示出抗菌活性。此外,一旦MT-LDPE与MS-LDPE相比性能得到改善,AgNP抗菌活性就证明是依赖载体的。关于包装的胡萝卜的理化特性,与MT-LDPE膜包装的胡萝卜相比(与MS-LDPE相比),观察到较低的可溶性固形物和重量减轻以及较高水平的抗坏血酸,从而可以更好地保护收获后的品质。在胡萝卜的物理化学性质中观察到的这种差异与每种复合膜的独特的抗微生物性和膜渗透性有关。另外,在本研究中使用的条件下,未观察到AgNP从包装迁移到鲜切胡萝卜,这对于食品包装安全性是非常需要的,表明此类活性包装在食品保鲜应用中的潜力。

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