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基于明胶的可生物降解复合膜的功能改性:综述。

Functional modification of gelatin-based biodegradable composite films: a review.

机构信息

College of Science, Beijing Forestry University, Beijing, P.R. China.

Beijing Key Laboratory of Forest Food Processing and Safety, Beijing Forestry University, Beijing, P.R. China.

出版信息

Food Addit Contam Part A Chem Anal Control Expo Risk Assess. 2023 Jul;40(7):928-949. doi: 10.1080/19440049.2023.2222844. Epub 2023 Jun 13.

Abstract

As one of the raw materials of biodegradable food packaging, gelatin is an environmentally friendly substitute for traditional plastic packaging. In this review both sources and extraction methods of gelatin are introduced, together with recent modification methods and applications of using plant sources instead of synthetic substances to endow gelatin film with functionality. Gelatin is extracted from mammals, marine organisms, and poultry. Different extraction methods (acid, alkali, enzyme treatment) can affect the molecular weight and amino acid composition of gelatin, thus affecting the molecular structure, physical properties, chemical and functional properties of gelatin. Gelatin serves as a good substrate, but its disadvantage is that it is very brittle. However, the addition of plasticizers can improve the flexibility of the film by reducing chain interactions during the dehydration process. Compared with other plasticizers, glycerol and sorbitol have better effects on adjusting the mechanical properties of gelatin films. Gelatin is combined with active substances such as essential oils, plant extracts, and nanoparticles to prepare gelatin based composite films with good mechanical properties and antibacterial and antioxidant properties. Gelatin-based composite films can effectively inhibit the growth and reproduction of microorganisms and lipid oxidation in food. Applying it to food packaging can improve the quality of fresh food and extend its shelf life.

摘要

作为可生物降解食品包装的原材料之一,明胶是传统塑料包装的环保替代品。本文综述了明胶的来源和提取方法,以及近年来使用植物来源替代合成物质来赋予明胶膜功能性的改性方法和应用。明胶可从哺乳动物、海洋生物和家禽中提取。不同的提取方法(酸法、碱法、酶处理)会影响明胶的分子量和氨基酸组成,从而影响明胶的分子结构、物理性质、化学和功能性质。明胶是一种很好的基质,但它的缺点是非常脆。然而,添加增塑剂可以通过减少脱水过程中链的相互作用来提高薄膜的柔韧性。与其他增塑剂相比,甘油和山梨糖醇对调节明胶薄膜的机械性能有更好的效果。将明胶与精油、植物提取物和纳米粒子等活性物质结合,制备具有良好机械性能和抗菌、抗氧化性能的明胶基复合膜。明胶基复合膜可以有效抑制微生物的生长和繁殖以及食品中的脂质氧化。将其应用于食品包装可以提高新鲜食品的质量并延长其保质期。

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