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Alginate-结晶纳米纤维素复合水凝胶作为多酚包埋剂的特性研究。

Characterization of Alginate-Crystalline Nanocellulose Composite Hydrogel as Polyphenol Encapsulation Agent.

机构信息

School of Agriculture and Food Sustainability, The University of Queensland, Brisbane, Queensland 4072, Australia.

Research Center for Agroindustry, Research Organization for Agriculture and Food, National Research and Innovation Agency, Tangerang, West Java 15314, Indonesia.

出版信息

Food Res Int. 2024 Nov;195:114989. doi: 10.1016/j.foodres.2024.114989. Epub 2024 Aug 30.

DOI:10.1016/j.foodres.2024.114989
PMID:39277250
Abstract

Alginate hydrogel is broadly known for its potential as an encapsulation agent due to its compatibility and versatility. Despite its predominance, alginate hydrogel naturally has macropores and a less rigid structure, which leads to syneresis and uncontrolled diffusion of bioactive compounds from the gel network. Combining alginate with other biopolymers has been considered to improve its properties as an encapsulation agent. This research aimed to evaluate the effect of Crystalline Nanocellulose (CNC) to the physical properties and the diffusion of gallic acid (GA), as a water-soluble polyphenol model, through the alginate-CNC composite hydrogels performed as an encapsulation agent. The hydrogel mixtures were made from 1:0, 1:1, 2:0, 2:1, 2:2, and 2:3 solid-basis ratio of sodium alginate:crystalline nanocellulose and evaluated for syneresis, gel strength and stiffness, rehydration properties and gel porosity. Alginate-CNC and GA interaction was observed through zeta-potential analysis and Fourier Transform Infrared (FTIR) spectroscopy. Results showed that composite hydrogel with the highest proportion of CNC increased the gel rehydration capacity (87.33 %), gel strength and stiffness as well as reduced the gel syneresis (14.72 %) and dried gel porosity (0.62). GA pre-loaded gel with 2:2 and 2:3 S-C ratios reduced the diffusion of gallic acid by 92.07-92.27 %. FTIR showed hydrogen bonding between GA and the alginate-CNC hydrogel. Alginate-CNC hydrogel had a fibrous and compact structure as shown in the cryo-SEM and confocal microscope images.

摘要

海藻酸钠水凝胶因其相容性和多功能性而被广泛认为是一种有潜力的包封剂。尽管海藻酸钠水凝胶具有优势,但它天然存在大孔和刚性结构较差的问题,这导致生物活性化合物从凝胶网络中渗出和不受控制地扩散。将海藻酸盐与其他生物聚合物结合已被认为可以改善其作为包封剂的性能。本研究旨在评估结晶纳米纤维素(CNC)对物理性质和作为包封剂的海藻酸钠-CNC 复合水凝胶中没食子酸(GA)扩散的影响,GA 是一种水溶性多酚模型。水凝胶混合物由 1:0、1:1、2:0、2:1、2:2 和 2:3 种不同的海藻酸钠:结晶纳米纤维素的固相比率制成,并对其收缩、凝胶强度和刚性、再水合特性和凝胶孔隙率进行了评估。通过zeta 电位分析和傅里叶变换红外(FTIR)光谱观察了海藻酸钠-CNC 和 GA 的相互作用。结果表明,CNC 比例最高的复合水凝胶增加了凝胶再水合能力(87.33%)、凝胶强度和刚性,同时降低了凝胶收缩(14.72%)和干凝胶孔隙率(0.62%)。2:2 和 2:3 S-C 比的 GA 预载凝胶降低了 92.07-92.27%的没食子酸扩散。FTIR 显示 GA 与海藻酸钠-CNC 水凝胶之间存在氢键。海藻酸钠-CNC 水凝胶具有纤维状和致密的结构,如冷冻扫描电镜和共聚焦显微镜图像所示。

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