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几丁质纳米晶体赋予聚乳酸薄膜抗氧化活性。

Chitin Nanocrystals Provide Antioxidant Activity to Polylactic Acid Films.

作者信息

Yanat Murat, Colijn Ivanna, Schroën Karin

机构信息

Laboratory of Food Process Engineering, Wageningen University and Research, Bornse Weilanden 9, 6708 WG Wageningen, The Netherlands.

出版信息

Polymers (Basel). 2022 Jul 21;14(14):2965. doi: 10.3390/polym14142965.

Abstract

About 1/3rd of produced food goes to waste, and amongst others, advanced packaging concepts need to be developed to prevent this from happening. Here, we target the antioxidative functionality of food packaging to thus address food oxidation without the need for the addition of antioxidants to the food product, which is not desirable from a consumer point of view. Chitin nanocrystals (ChNC) have been shown to be promising bio-fillers for improving the mechanical strength of biodegradable plastics, but their potential as active components in plastic films is rather unexplored. In the current study, we investigate the antioxidant activity of chitin nanocrystals as such and as part of polylactic acid (PLA) films. This investigation was conducted using DPPH (1,1-diphenyl-2-picrylhydrazyl) radical scavenging activity. Chitin nanocrystals produced via acid hydrolysis showed five times higher activity compared to crude chitin powder. When using these crystals as part of a polylactic acid film (either inside or on top), in both scenarios, antioxidant activity was found, but the effect was considerably greater when the particles were at the surface of the film. This is an important proof of the principle that it is possible to create biodegradable plastics with additional functionality through the addition of ChNC.

摘要

约三分之一的生产食品被浪费,因此需要开发先进的包装概念来防止这种情况发生。在此,我们以食品包装的抗氧化功能为目标,从而在无需向食品中添加抗氧化剂的情况下解决食品氧化问题,从消费者角度来看,添加抗氧化剂并非理想之选。几丁质纳米晶体(ChNC)已被证明是用于提高可生物降解塑料机械强度的有前景的生物填料,但其作为塑料薄膜活性成分的潜力尚未得到充分探索。在当前研究中,我们研究了几丁质纳米晶体本身以及作为聚乳酸(PLA)薄膜一部分时的抗氧化活性。这项研究是通过DPPH(1,1 - 二苯基 - 2 - 苦基肼)自由基清除活性进行的。通过酸水解制备的几丁质纳米晶体的活性比粗几丁质粉末高五倍。当将这些晶体用作聚乳酸薄膜的一部分(无论是在内部还是在顶部)时,在两种情况下都发现了抗氧化活性,但当颗粒位于薄膜表面时,效果要大得多。这是一个重要的原理证明,即通过添加ChNC可以制造具有附加功能的可生物降解塑料。

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