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The innovative fabrication and applications of carvacrol nanoemulsions, carboxymethyl chitosan microgels and their composite films

机译:Carvacrol纳米乳液,羧甲基壳聚糖微凝胶及其复合薄膜的创新制备和应用

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摘要

Carvacrol (CA) was firstly made into physically stable nanoemulsions using an innovative spontaneous emulsification method with carvacrol itself as oil phase without introducing other carrier oils. Self-crosslinking carboxymethyl chitosan (CMC) microgels via intermolecular hydrogen bonds were then fabricated using a simple solvent exchange method with ethanol as poor solvent. The CMC microgels obtained were rapidly deposited on the surface of tin foil using an electrospray technique to produce the CMC films. The stability of the films in water was further intensified by using Ca2+ as cross-linking agent. Also, the carvacrol nanoemulsions (CA-NEs) were loaded into the CMC films by utilizing swelling property of CMC microgels in aqueous solution. The results showed that the CA-NEs@CMC composite films possess satisfactory antioxidant activity, good antibacterial activity against S. aureus and E. coli, and excellent ability to extend the shelf life of wheat bread. We believe that the present strategies to prepare CA-NEs, CMC microgels and their composite films also apply to other types of essential oils and polymers, and the CA-NEs@CMC composite film is an excellent candidate for the active packaging.
机译:首先使用具有Carvacrol本身的创新的自发乳化方法作为油相,首先将钙抗菌剂(CA)纳入物理稳定的纳米乳液,而不会引入其他载体油。然后使用分子间氢键的自交联羧甲基壳聚糖(CMC)微凝胶用乙醇作为溶剂,用乙醇制成单分子氢键。使用电喷雾技术将获得的CMC微凝胶迅速沉积在锡箔的表面上,以产生CMC膜。通过使用Ca2 +作为交联剂进一步加强水中薄膜的稳定性。而且,通过利用水溶液中的CMC微凝胶的溶胀性能将CARVACROL纳米乳液(CA-NE)加载到CMC膜中。结果表明,CA-NES @ CMC复合薄膜具有令人满意的抗氧化活性,针对金黄色葡萄球菌和大肠杆菌的良好抗菌活性,以及​​延长小麦面包保质期的优异能力。我们认为,制备Ca-NE的目前的策略,CMC微凝胶及其复合膜也适用于其他类型的精油和聚合物,CA-NES @ CMC复合膜是活性包装的优异候选者。

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