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含α-生育酚的聚己内酯生物活性电纺纤维在食品包装中的应用。

Bioactive Electrospun Fibers of Poly(ε-Caprolactone) Incorporating α-Tocopherol for Food Packaging Applications.

机构信息

Laboratory of Physical Chemistry of Polymers, "Petru Poni" Institute of Macromolecular Chemistry, 41A Gr. Ghica Voda Alley, 700487 Iaşi, Romania.

Centre for Rapid and Sustainable Product Development, Institute Polytechnic of Leiria, Rua de Portugal, 2430-028 Marinha Grande, Portugal.

出版信息

Molecules. 2021 Sep 10;26(18):5498. doi: 10.3390/molecules26185498.

Abstract

Antioxidant activity is an important feature for food contact materials such as packaging, aiming to preserve freshness and retard food spoilage. Common bioactive agents are highly susceptible to various forms of degradation; therefore, protection is required to maintain functionality and bioavailability. Poly(ε-caprolactone) (PCL), a biodegradable GRAS labeled polymer, was used in this study for encapsulation of α-tocopherol antioxidant, a major component of vitamin E, in the form of electrospun fibers. Rheological properties of the fiber forming solutions, which determine the electrospinning behavior, were correlated with the properties of electrospun fibers, e.g., morphology and surface properties. Interactions through hydrogen bonds were evidenced between the two components. These have strong effect on structuration of macromolecular chains, especially at low α-tocopherol amounts, decreasing viscosity and elastic modulus. Intra-molecular interactions in PCL strengthen at high α-tocopherol amounts due to decreased solvation, allowing good structural recovery after cease of mechanical stress. Morphologically homogeneous electrospun fibers were obtained, with ~6 μm average diameter. The obtained fibers were highly hydrophobic, with fast release in 95% ethanol as alternative simulant for fatty foods. This induced good in vitro antioxidant activity and significant in vivo reduction of microbial growth on cheese, as determined by respirometry. Therefore, the electrospun fibers from PCL entrapping α-tocopherol as bioactive agent showed potential use in food packaging materials.

摘要

抗氧化活性是包装等食品接触材料的一个重要特性,旨在保持新鲜度并延缓食物变质。常见的生物活性物质很容易受到各种形式的降解;因此,需要进行保护以维持其功能和生物利用度。聚己内酯(PCL)是一种可生物降解的 GRAS 标记聚合物,在这项研究中被用于以电纺纤维的形式封装α-生育酚抗氧化剂,这是维生素 E 的主要成分。纤维形成溶液的流变性能决定了静电纺丝行为,与电纺纤维的性质(例如形态和表面性质)相关。两种成分之间存在氢键相互作用。这些相互作用对大分子链的结构有很强的影响,尤其是在α-生育酚含量较低的情况下,会降低粘度和弹性模量。在α-生育酚含量较高时,PCL 内部分子相互作用增强,由于溶剂化作用减弱,允许在停止机械应力后进行良好的结构恢复。得到了形态均匀的电纺纤维,平均直径约为 6 微米。所得到的纤维具有很强的疏水性,在 95%乙醇中快速释放,乙醇是脂肪食品的替代模拟物。这诱导了良好的体外抗氧化活性,并通过呼吸计测定,在奶酪上显著减少了微生物的生长。因此,作为生物活性物质包埋α-生育酚的 PCL 电纺纤维显示出在食品包装材料中的潜在用途。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/310b/8469439/5ed1e7e98d46/molecules-26-05498-g001.jpg

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