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基于从紫玉米芯中提取的花青素微胶囊并融入壳聚糖基质的抗氧化薄膜的研制。

Development of antioxidant films based on anthocyanin microcapsules extracted from purple corn cob and incorporated into a chitosan matrix.

作者信息

Bustamante-Bernedo Milagros Sofia, Félix Lizbet León, Gutiérrez-Pineda Eduart, Huamán-Castilla Nils Leander, Solis Jose Luis, León Mónica Marcela Gómez, Montoya-Matos I R, Yacono-Llanos J C, Pacheco-Salazar David G

机构信息

Laboratorio de Películas Delgadas y Nanomateriales, Escuela Profesional de Física, Universidad Nacional de San Agustín de Arequipa, Av. Independencia s/n, Arequipa, Peru.

Laboratory of Research and Agri-Food Development - LIDA, School of Basic Sciences, Technology and Engineering, National University Open and Distance (UNDA), Bogotá D. C., Colombia.

出版信息

Int J Biol Macromol. 2025 Jan;284(Pt 1):137658. doi: 10.1016/j.ijbiomac.2024.137658. Epub 2024 Nov 17.

Abstract

Biodegradable food packaging films were prepared from chitosan incorporated with microencapsulated anthocyanins powder (MAP) that was extracted from purple corn cob using the casting method. Anthocyanins extracts were microencapsulated with maltodextrin, gum arabic, and soy protein using a spray-drying method. The film based on chitosan and MAP (CHt@MAP) was prepared through citric acid cross-linking and plasticization with glycerol. The structural analysis of the CHt@MAP film revealed a semicrystalline structure by X-ray diffraction. The interactions were mainly via electrostatic and hydrogen bonding, as confirmed by Fourier-transform infrared. Based on scanning electron microscopy, the morphology of the films revealed evidence of the presence of MAP on the surface and cross-section. The microcapsules inside the films produced an increase in thickness (0.18-0.21 mm), lower water vapor permeability (12.4-8.5 × 10 g msPa), and reduced elongation at break (217 % to 165 %), as well as tensile strength (1.3 to 0.45 MPa) compared to the chitosan film. Furthermore, the antioxidant activity of CHt@MAP film was high, with a radical scavenging activity of 56 %. It also exhibited a strong barrier to UV and visible light. The results indicate that the CHt@MAP film preserves the shelf life of blueberries at room temperature and could be used as an active packaging film for foods.

摘要

可生物降解的食品包装薄膜是由壳聚糖与微囊化花青素粉末(MAP)制成的,该微囊化花青素粉末是从紫玉米芯中提取的,采用流延法制备。花青素提取物通过喷雾干燥法与麦芽糊精、阿拉伯胶和大豆蛋白进行微囊化处理。基于壳聚糖和MAP的薄膜(CHt@MAP)通过柠檬酸交联和甘油增塑制备而成。CHt@MAP薄膜的结构分析通过X射线衍射显示为半结晶结构。傅里叶变换红外光谱证实,相互作用主要通过静电和氢键。基于扫描电子显微镜,薄膜的形态显示出表面和横截面存在MAP的证据。与壳聚糖薄膜相比,薄膜内部的微囊使厚度增加(0.18 - 0.21毫米),水蒸气透过率降低(12.4 - 8.5×10克/平方米·帕斯卡),断裂伸长率降低(从217%降至165%),以及拉伸强度降低(从1.3兆帕降至0.45兆帕)。此外,CHt@MAP薄膜的抗氧化活性很高,自由基清除活性为56%。它还对紫外线和可见光表现出很强的阻隔性。结果表明,CHt@MAP薄膜在室温下可延长蓝莓的保质期,可作为食品的活性包装薄膜。

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