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首页> 外文期刊>Food and bioprocess technology >Interfacial Assembly of a Cashew Nut (Anacardium occidentale) Testa Extract onto a Cellulose-Based Film from Sugarcane Bagasse to Produce an Active Packaging Film with pH-Triggered Release Mechanism
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Interfacial Assembly of a Cashew Nut (Anacardium occidentale) Testa Extract onto a Cellulose-Based Film from Sugarcane Bagasse to Produce an Active Packaging Film with pH-Triggered Release Mechanism

机译:腰果的界面组装(ocaNardium occidentale)Testa提取到甘蔗蛋白饼干的基于纤维素的薄膜上,以产生具有pH触发释放机制的活性包装膜

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摘要

This study aims to produce a biodegradable active packaging film that is pH sensitive, and has a good antioxidant and antimicrobial activity. To do this, a novel phenolic extract was interfacially assembled onto a cellulose film, resulting in a film with a pH-triggered release mechanism of the active polyphenol agent. First, an aqueous extraction of cashew nut testa (CTE) was performed and subsequently, the CTE was characterized. The disc diffusion assay showed that CTE exhibited antimicrobial activity towards the food pathogens Escherichia coli (6 mm) and Staphylcoccus aureus (12 mm). CTE was also cytotoxic against cancer HepG2 and HEK293 cells, reducing the viability to 52% and 47%, respectively. It was incorporated into a cellulose-based packaging film, prepared from the by-product, sugarcane bagasse (SC) through interfacial assembly. The incorporation of CTE resulted in a film with good antimicrobial activity, excellent antioxidant content (91%), and has extremely high thermal stability (290 degrees C). FTIR indicated the formation of hydrogen bond between the SC cellulose-based film and CTE. The hydrogen bonds formed between the cellulose film and CTE became the driving force behind the pH-triggered release mechanism. It was found that the active agent, tannic acid, could be controllably released from the film, depending on the pH of the environment. Our strategy to produce a cellulose-based film impregnated with a phenolic extract, using interfacial assembly, resulted in an active packaging film with pH-triggered release mechanism. This film could be useful to extend the shelf life of perishable food items.
机译:本研究旨在产生一种可生物降解的活性包装薄膜,其pH敏感,具有良好的抗氧化和抗微生物活性。为此,新颖的酚类提取物被界面组装到纤维素膜上,导致具有活性多酚试剂的pH-触发释放机制的膜。首先,进行腰螺母Testa(CTE)的水性提取,随后进行CTE。盘扩散测定表明,CTE表现出对食物病原体大肠杆菌(6mm)和金黄色葡萄球菌(12mm)的抗菌活性。 CTE也是对癌症HepG2和HEK293细胞的细胞毒性,分别将活力降低至52%和47%。将其掺入纤维素的包装膜中,通过界面组件由副产物制备甘蔗甘蔗渣(SC)。 CTE的掺入导致具有良好抗微生物活性的膜,优异的抗氧化含量(91%),具有极高的热稳定性(290℃)。 FTIR表明了SC纤维素基膜和CTE之间的氢键形成。在纤维素膜和CTE之间形成的氢键成为pH-触发释放机构后面的驱动力。结果发现,取决于环境的pH,可以从膜可控地释放活性剂单宁酸。我们用界面组件制备浸渍有酚类提取物的纤维素的薄膜的策略导致具有pH-触发的释放机制的活性包装膜。这部电影可用于延长易腐食品的保质期。

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