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淀粉 - 黏液复合膜:物理化学与生物学视角综述

Starch-Mucilage Composite Films: An Inclusive on Physicochemical and Biological Perspective.

作者信息

Tosif Mansuri M, Najda Agnieszka, Bains Aarti, Zawiślak Grażyna, Maj Grzegorz, Chawla Prince

机构信息

Department of Food Technology and Nutrition, Lovely Professional University, Jalandhar 144411, Punjab, India.

Department of Vegetable Crops and Medicinal Plants, University of Life Science in Lublin, Doświadczalna Street 51A, 20-280 Lublin, Poland.

出版信息

Polymers (Basel). 2021 Aug 4;13(16):2588. doi: 10.3390/polym13162588.

Abstract

In recent years, scientists have focused on research to replace petroleum-based components plastics, in an eco-friendly and cost-effective manner, with plant-derived biopolymers offering suitable mechanical properties. Moreover, due to high environmental pollution, global warming, and the foreseen shortage of oil supplies, the quest for the formulation of biobased, non-toxic, biocompatible, and biodegradable polymer films is still emerging. Several biopolymers from varied natural resources such as starch, cellulose, gums, agar, milk, cereal, and legume proteins have been used as eco-friendly packaging materials for the substitute of non-biodegradable petroleum-based plastic-based packaging materials. Among all biopolymers, starch is an edible carbohydrate complex, composed of a linear polymer, amylose, and amylopectin. They have usually been considered as a favorite choice of material for food packaging applications due to their excellent forming ability, low cost, and environmental compatibility. Although the film prepared from bio-polymer materials improves the shelf life of commodities by protecting them against interior and exterior factors, suitable barrier properties are impossible to attain with single polymeric packaging material. Therefore, the properties of edible films can be modified based on the hydrophobic-hydrophilic qualities of biomolecules. Certain chemical modifications of starch have been performed; however, the chemical residues may impart toxicity in the food commodity. Therefore, in such cases, several plant-derived polymeric combinations could be used as an effective binary blend of the polymer to improve the mechanical and barrier properties of packaging film. Recently, scientists have shown their great interest in underutilized plant-derived mucilage to synthesize biodegradable packaging material with desirable properties. Mucilage has a great potential to produce a stable polymeric network that confines starch granules that delay the release of amylose, improving the mechanical property of films. Therefore, the proposed review article is emphasized on the utilization of a blend of source and plant-derived mucilage for the synthesis of biodegradable packaging film. Herein, the synthesis process, characterization, mechanical properties, functional properties, and application of starch and mucilage-based film are discussed in detail.

摘要

近年来,科学家们致力于研究如何以环保且经济高效的方式,用具有合适机械性能的植物源生物聚合物替代石油基塑料成分。此外,由于环境污染严重、全球变暖以及预计的石油供应短缺,对生物基、无毒、生物相容且可生物降解的聚合物薄膜配方的探索仍在不断涌现。几种来自不同自然资源的生物聚合物,如淀粉、纤维素、树胶、琼脂、牛奶、谷物和豆类蛋白,已被用作环保包装材料,以替代不可生物降解的石油基塑料包装材料。在所有生物聚合物中,淀粉是一种可食用的碳水化合物复合物,由线性聚合物直链淀粉和支链淀粉组成。由于其出色的成型能力、低成本和环境相容性,它们通常被认为是食品包装应用的首选材料。尽管由生物聚合物材料制备的薄膜通过保护商品免受内部和外部因素影响,从而延长了商品的保质期,但单一聚合物包装材料无法获得合适的阻隔性能。因此,可根据生物分子的疏水 - 亲水性来改变可食用薄膜的性能。人们已经对淀粉进行了某些化学改性;然而,化学残留物可能会在食品中产生毒性。因此,在这种情况下,几种植物源聚合物组合可以用作聚合物的有效二元共混物,以改善包装薄膜的机械性能和阻隔性能。最近,科学家们对未充分利用的植物源黏液表现出极大兴趣,以合成具有理想性能的可生物降解包装材料。黏液具有产生稳定聚合物网络的巨大潜力,该网络限制淀粉颗粒,延缓直链淀粉的释放,从而改善薄膜的机械性能。因此,本文强调利用来源与植物源黏液的混合物来合成可生物降解包装薄膜。在此,详细讨论了基于淀粉和黏液的薄膜的合成过程、表征、机械性能、功能特性及应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7872/8401871/c5fd6a5e89d3/polymers-13-02588-g001.jpg

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