Preparation and characterization of Levan composite film incorporating vanillin for use as a potential edible coating for peony seed oil.

IF 7.7 1区 化学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Min Xu, Lixia Zhang, Yihong Zeng, Zhijiang Zhou, Ye Han
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引用次数: 0

Abstract

The study prepared an edible packaging material for peony seed oil by adding natural antioxidant vanillin to a microbial Levan composite film. The presence of highly branched Levan, containing polyhydroxyl groups, significantly enhanced the maximum tension (26.57 N), tensile strength (36.31 MPa), and elongation at break (42.15 %) of the Aga/Lev film. The values were 9.84-fold, 5.74-fold, and 1.11-fold higher than those of Aga films, respectively. Furthermore, SEM and FTIR analysis revealed that Levan increased the intermolecular force of the vanillin composite film (Aga/Lev/Gly/Van), forming a dense gel network with a Schiff base reaction occurring between vanillin and glycine. The addition of vanillin and glycine slightly lowered the transparency of the film but enhanced the ultra violet (UV)-blocking with 100 % UV-region and 91 % visible region light screening. The Aga/Lev/Gly/Van films showed strong antioxidant efficacy with 91.85 % ABTS and 44.33 % DPPH radical scavenging potential. The electrical conductivity, P-anisidine value, thiobarbituric acid value, and fatty acid distribution of peony seed oil samples were analyzed after accelerated storage. The Aga/Lev/Gly/Van group had a significantly higher retention rate (95.65 %) for total conjugated fatty acids compared to the control group (84.17 %). The utilization of Aga/Lev/Gly/Van film packaging effectively extended the shelf life of peony seed oil and retarded the degradation of unsaturated fatty acids in the oil. Therefore, Levan composite films incorporating vanillin can be used as sustainable packaging materials to minimize the oxidation of susceptible foods.

制备含有香兰素的莱万复合薄膜并确定其特性,以用作牡丹籽油的潜在食用涂层。
该研究通过在微生物利凡复合薄膜中添加天然抗氧化剂香兰素,制备了牡丹籽油的食用包装材料。含有多羟基的高支化利凡的存在显著提高了 Aga/Lev 薄膜的最大拉力(26.57 N)、拉伸强度(36.31 MPa)和断裂伸长率(42.15 %)。这些数值分别是 Aga 薄膜的 9.84 倍、5.74 倍和 1.11 倍。此外,扫描电镜和傅立叶变换红外光谱分析显示,利凡增加了香兰素复合薄膜(Aga/Lev/Gly/Van)的分子间作用力,形成了致密的凝胶网络,香兰素和甘氨酸之间发生了希夫碱反应。香兰素和甘氨酸的添加略微降低了薄膜的透明度,但增强了紫外线(UV)阻隔性,紫外线区域遮光率为 100%,可见光区域遮光率为 91%。Aga/Lev/Gly/Van 薄膜具有很强的抗氧化功效,ABTS 和 DPPH 自由基清除率分别为 91.85% 和 44.33%。对加速储存后牡丹籽油样品的电导率、P-甲氧基苯胺值、硫代巴比妥酸值和脂肪酸分布进行了分析。与对照组(84.17%)相比,Aga/Lev/Gly/Van 组的总共轭脂肪酸保留率(95.65%)明显更高。使用 Aga/Lev/Gly/Van 薄膜包装有效延长了牡丹籽油的保质期,并延缓了牡丹籽油中不饱和脂肪酸的降解。因此,含有香兰素的利凡复合薄膜可用作可持续包装材料,最大程度地减少易氧化食品的氧化。
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来源期刊
International Journal of Biological Macromolecules
International Journal of Biological Macromolecules 生物-生化与分子生物学
CiteScore
13.70
自引率
9.80%
发文量
2728
审稿时长
64 days
期刊介绍: The International Journal of Biological Macromolecules is a well-established international journal dedicated to research on the chemical and biological aspects of natural macromolecules. Focusing on proteins, macromolecular carbohydrates, glycoproteins, proteoglycans, lignins, biological poly-acids, and nucleic acids, the journal presents the latest findings in molecular structure, properties, biological activities, interactions, modifications, and functional properties. Papers must offer new and novel insights, encompassing related model systems, structural conformational studies, theoretical developments, and analytical techniques. Each paper is required to primarily focus on at least one named biological macromolecule, reflected in the title, abstract, and text.
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