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基于小麦滤粉的新型多功能膜的研制及特性:具有抗菌、抗真菌和杀虫潜力。

Development and characterization of a novel multifunctional film based on wheat filter flour incorporated with carvacrol: Antibacterial, antifungal, and insecticidal potentials.

机构信息

Department of Food Science and Technology, 123290Gorgan University of Agricultural Sciences and Natural Resources, Iran.

出版信息

Food Sci Technol Int. 2022 Oct;28(7):603-612. doi: 10.1177/10820132211041826. Epub 2021 Dec 6.

Abstract

Wheat filter flour is a by-product derived from the modern wheat milling process. In this study, the influence of plasticizer type (glycerol (G) and sorbitol (S)) and content (25, 35, and 45 g/100 g polymer) on the wheat filter flour-based film was evaluated. Regardless of plasticizer type, increasing the plasticizer content enhanced moisture content, water solubility, and water vapor permeability of film samples. The S-plasticized films presented the greatest tensile strength and the lowest EAB%. The scanning electron microscope observations confirmed the uniform structure of G-plasticized film. Moreover, antimicrobial and physico-mechanical properties of G-plasticized (25%) film were evaluated at the presence of carvacrol (5 and 10 g/100 g polymer). The considerable improvement was achieved in water affinity (14.2%) and flexibility (8.6%) by incorporating 10% carvacrol in G-plasticized films. The greatest inhibitory properties of active wheat filter flour films were observed against . By increasing the carvacrol concentration in film-forming solution, the inhibitory activity against in the liquid food model system was increased by 90.3% and 66.95%, respectively. Moreover, the active wheat filter flour-based film released a considerable insecticidal activity against Sitophilus granarius and Tribolium confusum. This work offers a novel utilization of wheat filter flour as an inexpensive blend polymer to manufacture multifunctional active film, which provides a promising approach for pest management besides enhancing the safety of products.

摘要

小麦滤粉是从现代小麦碾磨过程中获得的副产品。在本研究中,评估了增塑剂类型(甘油(G)和山梨糖醇(S))和含量(25、35 和 45 g/100 g 聚合物)对基于小麦滤粉的薄膜的影响。无论增塑剂类型如何,增加增塑剂含量都会提高膜样品的水分含量、水溶性和水蒸气透过率。S 增塑的薄膜具有最大的拉伸强度和最低的 EAB%。扫描电子显微镜观察证实了 G 增塑膜的均匀结构。此外,还评估了在含有香芹酚(5 和 10 g/100 g 聚合物)的情况下,G 增塑(25%)膜的抗菌和物理力学性能。通过在 G 增塑膜中加入 10%的香芹酚,水亲和力(14.2%)和柔韧性(8.6%)得到了显著提高。活性小麦滤粉膜对 的抑制作用最大。通过增加成膜溶液中香芹酚的浓度,对液体食品模型系统中 的抑制活性分别提高了 90.3%和 66.95%。此外,活性小麦滤粉基膜对玉米象和赤拟谷盗表现出相当大的杀虫活性。这项工作提供了一种利用小麦滤粉作为廉价共混聚合物制造多功能活性膜的新方法,除了提高产品安全性外,还为害虫管理提供了一种有前途的方法。

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