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基于苹果果胶的活性薄膜来保鲜油脂:天然支链植物糖巨淀粉-姜黄素主客体的影响。

Apple pectin-based active films to preserve oil: Effects of naturally branched phytoglycogen-curcumin host.

机构信息

College of Food Science and Technology, Hebei Agricultural University, Baoding 071000, PR China.

College of Food Science and Technology, Hebei Agricultural University, Baoding 071000, PR China.

出版信息

Int J Biol Macromol. 2024 May;266(Pt 1):131218. doi: 10.1016/j.ijbiomac.2024.131218. Epub 2024 Mar 28.

Abstract

Pectin has excellent film-forming properties, but its functional properties need to be enhanced. Therefore, we constructed naturally branched phytoglycogen (PG) nanoparticles to solubilize curcumin (CCM) and further enhance the properties of apple pectin-based active films. The size of the PG spherical particles ranged from 30 to 100 nm with some aggregates. The branch density of the PG was 6.02 %. These PG nanoparticles increased the solubility of CCM nearly 1742-fold and a nanosized phytoglycogen-curcumin (PG-CCM) host was formed via hydrogen bonding and hydrophobic interaction. This host promoted the formation of pectin-based films with a dense structure and increased their tensile strength to 23.51 MPa. The coefficient to water vapor permeability, oxygen permeability and carbon dioxide permeability were all decreased indicating their barrier performance were improved. Among them, the oxygen permeability coefficient decreased most, from 1.14 × 10 g·m·s to 0.8 × 10 g·m·s. Also, the transmittance of the active film at 280 nm and 660 nm decreased to 0.65 % and 72.10 %. Antioxidant and antibacterial properties were significantly enhanced (P < 0.05). And the results showed this film was an excellent oil packaging material. The active film incorporating PG-CCM host can replace heat-sealed plastic bags/pouch made from polyethylene and polypropylene synthetic plastics, and solve the problem that plastic packaging is difficult to degrade and cannot be squeezed clean. This provides a new conceptual framework for developing pectin-based active films by incorporating of PG and CCM.

摘要

果胶具有优良的成膜性能,但功能性质需要增强。因此,我们构建了天然支链植物糖原(PG)纳米颗粒来溶解姜黄素(CCM),并进一步增强基于苹果果胶的活性膜的性能。PG 球形颗粒的粒径范围为 30 至 100nm,有些为聚集体。PG 的支化密度为 6.02%。这些 PG 纳米颗粒使 CCM 的溶解度提高了近 1742 倍,并通过氢键和疏水相互作用形成了纳米级植物糖原-姜黄素(PG-CCM)主体。该主体促进了具有致密结构的果胶基膜的形成,并将其拉伸强度提高至 23.51MPa。水蒸气渗透率、氧气渗透率和二氧化碳渗透率的系数均降低,表明其阻隔性能得到改善。其中,氧气渗透率系数降低最多,从 1.14×10g·m·s降低至 0.8×10g·m·s。此外,活性膜在 280nm 和 660nm 处的透光率降低至 0.65%和 72.10%。抗氧化和抗菌性能显著增强(P<0.05)。结果表明,该膜是一种优良的油包装材料。该活性膜中加入 PG-CCM 主体可以替代由聚乙烯和聚丙烯合成塑料制成的热封塑料袋/袋,解决了塑料包装难以降解且无法挤压干净的问题。这为通过加入 PG 和 CCM 开发基于果胶的活性膜提供了新的概念框架。

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