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通过与壳聚糖形成氢键相互作用增强聚己内酯纳米纤维膜在食品包装中的性能。

Enhancement of polycaprolactone nanofiber film performance by hydrogen bonding interactions with chitosan for food packaging.

作者信息

Zhao Yue, Templonuevo Rea Mae, Chun Jiyeon

机构信息

Department of Food Science and Technology, Sunchon National University, Suncheon, Jeonnam 57922, Republic of Korea.

Department of Food Science and Technology, Sunchon National University, Suncheon, Jeonnam 57922, Republic of Korea; College of Fisheries, Central Luzon State University, Science City of Muñoz, Nueva Ecija 3120, Philippines.

出版信息

Int J Biol Macromol. 2025 Apr;300:139437. doi: 10.1016/j.ijbiomac.2024.139437. Epub 2025 Jan 3.

Abstract

Hybrid environmentally friendly nanocomposite films were synthesized via electrospinning using polycaprolactone (PCL) and chitosan (CH). The resulting nanofiber films displayed a homogeneous fibrous microstructure with average diameters between 250-270 nm. Molecular simulation experiments revealed a progressive increase in hydrogen bonding over time. The impact of different CH concentrations on surface roughness was investigated, with results showing that PCL/CH (2 %) reduced surface roughness by 240 % compared to pure PCL film. Furthermore, the addition of CH imparted stable hydrophobic properties to the nanofiber film, with a water contact angle remaining steady at 107° after 20 s. L929 cell experiments confirmed that the nanofiber film exhibits good biocompatibility. Practical application studies using blueberries demonstrated that the PCL/CH (2 %) film effectively preserved freshness at room temperature for up to 5 days. These findings indicate that PCL/CH (2 %) films hold significant potential for use in fruit packaging applications.

摘要

通过静电纺丝法,以聚己内酯(PCL)和壳聚糖(CH)为原料合成了混合环保纳米复合薄膜。所得的纳米纤维薄膜呈现出均匀的纤维微观结构,平均直径在250 - 270纳米之间。分子模拟实验表明,氢键随时间逐渐增加。研究了不同CH浓度对表面粗糙度的影响,结果表明,与纯PCL薄膜相比,PCL/CH(2%)使表面粗糙度降低了240%。此外,CH的添加赋予了纳米纤维薄膜稳定的疏水性能,20秒后水接触角稳定保持在107°。L929细胞实验证实该纳米纤维薄膜具有良好的生物相容性。使用蓝莓的实际应用研究表明,PCL/CH(2%)薄膜在室温下能有效保鲜长达5天。这些发现表明,PCL/CH(2%)薄膜在水果包装应用中具有巨大的潜力。

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