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含氯化胆碱和柠檬酸混合物的腺嘌呤修饰可食用壳聚糖薄膜。

The adenine-modified edible chitosan films containing choline chloride and citric acid mixture.

机构信息

Chair of Physical Chemistry and Physicochemistry of Polymers, Faculty of Chemistry, Nicolaus Copernicus University in Toruń, 7 Gagarina Street, 87-100, Toruń, Poland.

Faculty of Biological and Veterinary Sciences, Nicolaus Copernicus University in Toruń, 1 Lwowska Street, 87-100, Toruń, Poland.

出版信息

Sci Rep. 2023 Aug 3;13(1):12629. doi: 10.1038/s41598-023-39870-4.

Abstract

A series of biopolymeric chitosan-based (Ch) films were prepared with choline chloride and citric acid plasticizer (deep eutectic solvent, DES). An effect of adenine (A, vitamin B4) addition on the functional properties of these films was evaluated. Several physicochemical and mechanical properties were tested: Fourier-transformed infrared spectra proved DES's plasticizing and crosslinking effect, while scanning electron microscopy and atomic force microscopy techniques confirmed the possible phase separation after adenine addition. These changes affected the mechanical characteristics and the water vapor and oxygen permeability. The prepared materials are not water soluble because the CA acts as a crosslinker. The adenine addition on antioxidative and antimicrobial properties was also checked. It was found that Ch-DES materials with A exhibit improved antioxidative properties (55.8-66.1% of HO scavenging activity) in contrast to the pristine chitosan-DES material (51.1% of HO scavenging activity), while the material is still non-mutagenic (lack of growth of Salmonella typhimurium) and possesses antimicrobial features (no E. coli observed for all the tested films and inhibition zones noted for S. aureus). The mentioned properties, reduced oxygen transmission (1.6-2.1 g m h), and mechanical characteristics within the range of typical food packaging plastics proved the potential of Ch-DES-A films in the packaging sector. Moreover, the antioxidative properties, usage of substrates being allowed as food additives, and the presence of adenine create the advantage of the Ch-DES-A materials as edible coatings, being also a source of Vitamin B4.

摘要

一系列基于壳聚糖的生物聚合物(Ch)薄膜是用氯化胆碱和柠檬酸增塑剂(深共晶溶剂,DES)制备的。评估了腺嘌呤(A,维生素 B4)添加对这些薄膜功能特性的影响。测试了几种物理化学和机械性能:傅里叶变换红外光谱证明了 DES 的增塑和交联作用,而扫描电子显微镜和原子力显微镜技术证实了腺嘌呤添加后可能发生的相分离。这些变化影响了机械特性以及水蒸气和氧气渗透性。由于 CA 充当交联剂,因此所制备的材料不溶于水。还检查了添加腺嘌呤对抗氧化和抗菌性能的影响。结果发现,与原始壳聚糖-DES 材料(HO 清除活性的 51.1%)相比,含 A 的 Ch-DES 材料具有改善的抗氧化特性(HO 清除活性的 55.8-66.1%),而材料仍然是非诱变的(缺乏鼠伤寒沙门氏菌的生长)并且具有抗菌特性(所有测试的薄膜都没有观察到大肠杆菌,并且注意到对金黄色葡萄球菌的抑制区)。所提到的性质,即降低的氧气透过率(1.6-2.1 g m h)和机械特性在典型食品包装塑料范围内证明了 Ch-DES-A 薄膜在包装领域的潜力。此外,抗氧化性能、允许作为食品添加剂的基质的使用以及腺嘌呤的存在使 Ch-DES-A 材料具有作为可食用涂层的优势,同时也是维生素 B4 的来源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/19a4/10400631/bd25d9a38e20/41598_2023_39870_Fig1_HTML.jpg

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