College of Food Science and Technology, Shanghai Ocean University, Shanghai 201306, China.
Engineering Research Center of Food Thermal-Processing Technology, Shanghai Ocean University, Shanghai 201306, China.
Molecules. 2021 Nov 25;26(23):7140. doi: 10.3390/molecules26237140.
This study aimed to develop an active biodegradable bilayer film and to investigate the release behaviors of active compounds into different food matrices. Cinnamaldehyde (CI) or thymol (Ty) was encapsulated in -cyclodextrin (-CD) to prepare the active -CD inclusion complex (-CD-CI/-CD-Ty). The tilapia fish gelatin-sodium alginate composite (FGSA) containing -CD-CI or -CD-Ty was coated on the surface of PLA film to obtain the active bilayer film. Different food simulants including liquid food simulants (water, 3% acetic acid, 10% ethanol, and 95% ethanol), solid dry food simulant (modified polyphenylene oxide (Tenax TA)), and the real food (Japanese sea bass) were selected to investigate the release behaviors of bilayer films into different food matrixes. The results showed that the prepared -CD inclusion complexes distributed evenly in the cross-linking structure of FGSA and improved the thickness and water contact angle of the bilayer films. Active compounds possessed the lowest release rates in Tenax TA, compared to the release to liquid simulants and sea bass. CI and Ty sustained the release to the sea bass matrix with a similar behavior to the release to 95% ethanol. The bilayer film containing -CD-Ty exhibited stronger active antibacterial and antioxidant activities, probably due to the higher release efficiency of Ty in test mediums.
本研究旨在开发一种具有活性的可生物降解双层膜,并研究活性化合物在不同食品基质中的释放行为。肉桂醛(CI)或百里香酚(Ty)被包封在β-环糊精(β-CD)中,以制备活性β-CD 包合物(β-CD-CI/β-CD-Ty)。含有β-CD-CI 或β-CD-Ty 的罗非鱼明胶-海藻酸钠复合(FGSA)被涂覆在 PLA 膜的表面上,以获得活性双层膜。选择不同的食品模拟物,包括液体食品模拟物(水、3%乙酸、10%乙醇和 95%乙醇)、固体干食品模拟物(改性聚苯醚(Tenax TA))和实际食品(日本鲈鱼),以研究双层膜在不同食品基质中的释放行为。结果表明,制备的β-CD 包合物均匀分布在 FGSA 的交联结构中,提高了双层膜的厚度和水接触角。与释放到液体模拟物和鲈鱼相比,活性化合物在 Tenax TA 中的释放率最低。CI 和 Ty 以与释放到 95%乙醇相似的行为持续释放到鲈鱼基质中。含有β-CD-Ty 的双层膜表现出更强的活性抗菌和抗氧化活性,这可能是由于 Ty 在测试介质中的释放效率更高。