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Edible lactoferrin bacterial cellulose films as an effective and low-cost antimicrobial active packaging

机译:可食用的乳铁蛋白细菌纤维素膜可作为一种有效的低成本抗菌活性包装

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摘要

Active packaging is an increasingly reliable technology for assuring the safety and maintenance/improvement of the organoleptic traits of the enclosed food products. Bio-based materials with a wide set of highly impressive characteristics were assembled through a simple and effective methodology to produce affordable edible antibacterial active films. Bacterial cellulose (BC) was used as film scaffold since it is an extremely pure polysaccharide that possesses noteworthy properties for food casing such as high toughness, shape retention and works as a stabilizing agent. Functionalization of BC was achieved through absorption of lactoferrin (LF), a bilobar protein mainly extracted from milk that possess a numerous plethora of activities, such as broad spectrum antibacterial effect, immunoregulatory properties, and also promotes bifidobacteria and intestinal epithelium growth. These films were extensively characterized in terms of their physicochemical characteristics, bactericidal efficiency and cytotoxicity. The LF absorption and de-absorption profiles of the BC films were registered. Surface free energy, water vapour permeability, attenuated total reflection Fourier transform infrared spectroscopy, dynamic mechanical analysis (in water saturated conditions) and swelling profile, and other critical characterization techniques were employed. The antibacterial properties were assessed through the determination of the specific growth rate impact, “live and dead” fluorescence, scanning electron microscopy and colony forming units’ count; using two model microorganisms (Escherichia coli and Staphylococcus aureus). The contact killing properties were evaluated for standalone films and for a specific case study (fresh sausage). Finally, the films cytotoxicity was determined after digestion in a dynamic mimetic artificial gastrointestinal digestive system. All attained results lead us to conclude that the obtained active edible films display an effective and significant antimicrobial activity against both Gram – and + and revealed no cytotoxicity, prior and after the gastrointestinal digestion. Thus, these new films present a high potential to safely functionalize the encased foods, while providing prophylactic properties.Acknowledgements: The authors acknowledge the Portuguese Foundation for Science and Technology (FCT, Portugal) for the financial support provided by the research grants SFRH/BD/64901/2009, SFRH/BD/63578/2009, SFRH/BPD/64958/2009, SFRH/BPD/64958/2009 for Jorge Padrão, Sara Gonçalves, João P. Silva and Vitor Sencadas respectively, and also for FCT Strategic Project PEst-OE/EQB/LA0023/2013
机译:主动包装是一种日益可靠的技术,用于确保封闭食品的安全性以及维持/改善感官特性。通过简单有效的方法组装具有广泛令人印象深刻特性的生物基材料,以生产可负担的食用抗菌活性薄膜。细菌纤维素(BC)被用作薄膜支架,因为它是一种极纯的多糖,对食品包装具有显着的特性,例如高韧性,保形性并可以用作稳定剂。 BC的功能化是通过吸收乳铁蛋白(LF)来实现的,乳铁蛋白是一种主要从牛奶中提取的双叶蛋白,具有多种活性,例如广谱抗菌作用,免疫调节特性,并促进双歧杆菌和肠上皮细胞的生长。这些膜的理化特性,杀菌效率和细胞毒性得到了广泛表征。记录了BC膜的LF吸收和解吸曲线。使用了表面自由能,水蒸气渗透性,衰减全反射傅立叶变换红外光谱,动态力学分析(在水饱和条件下)和溶胀曲线以及其他关键表征技术。通过确定特定生长速率的影响,“生与死”荧光,扫描电子显微镜和菌落形成单位的数量来评估抗菌性能。使用两种模型微生物(大肠杆菌和金黄色葡萄球菌)。对独立膜和特定案例研究(新鲜香肠)的接触杀灭特性进行了评估。最后,在动态模拟人工胃肠消化系统中消化后,确定膜的细胞毒性。所有获得的结果使我们得出结论,即所获得的活性可食膜在消化之前和之后均显示出对革兰氏-和+的有效且显着的抗菌活性,并且没有细胞毒性。因此,这些新影片在安全地使包装食品具有功能性的同时,还具有预防作用。致谢:作者感谢葡萄牙科学技术基金会(FCT,葡萄牙)提供的研究资助SFRH / BD / 64901/2009,SFRH / BD / 63578/2009,SFRH / BPD / 64958/2009,SFRH / BPD / 64958/2009分别用于JorgePadrão,SaraGonçalves,JoãoP.Silva和Vitor Sencadas,以及FCT战略项目PEst-OE / EQB / LA0023 / 2013

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