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由食品级生物聚合物组装而成的复合水凝胶:制备、性能与应用。

Composite hydrogels assembled from food-grade biopolymers: Fabrication, properties, and applications.

机构信息

Department of Food Science & Bioengineering, Zhejiang Gongshang University, 18 Xuezheng Street, Hangzhou, Zhejiang 310018, China; Department of Food Science, University of Massachusetts, Amherst, MA 01003, USA.

出版信息

Adv Colloid Interface Sci. 2024 Oct;332:103278. doi: 10.1016/j.cis.2024.103278. Epub 2024 Aug 14.

Abstract

Biopolymer hydrogels have a broad range of applications as soft materials in a variety of commercial products, including foods, cosmetics, agrochemicals, personal care products, pharmaceuticals, and biomedical products. They consist of a network of entangled or crosslinked biopolymer molecules that traps relatively large quantities of water and provides semi-solid properties, like viscoelasticity or plasticity. Composite biopolymer hydrogels contain inclusions (fillers) to enhance their functional properties, including solid particles, liquid droplets, gas bubbles, nanofibers, or biological cells. These fillers vary in their composition, size, shape, rheology, and surface properties, which influences their impact on the rheological properties of the biopolymer hydrogels. In this article, the various types of biopolymers used to fabricate composite hydrogels are reviewed, with an emphasis on edible proteins and polysaccharides from sustainable sources, such as plants, algae, or microbial fermentation. The different kinds of gelling mechanism exhibited by these biopolymers are then discussed, including heat-, cold-, ion-, pH-, enzyme-, and pressure-set mechanisms. The different ways that biopolymer molecules can organize themselves in single and mixed biopolymer hydrogels are then highlighted, including polymeric, particulate, interpenetrating, phase-separated, and co-gelling systems. The impacts of incorporating fillers on the rheological properties of composite biopolymer hydrogels are then discussed, including mathematical models that have been developed to describe these effects. Finally, potential applications of composite biopolymer hydrogels are presented, including as delivery systems, packaging materials, artificial tissues, wound healing materials, meat analogs, filters, and adsorbents. The information provided in this article is intended to stimulate further research into the development and application of composite biopolymer hydrogels.

摘要

生物聚合物水凝胶作为各种商业产品(包括食品、化妆品、农用化学品、个人护理产品、药品和生物医学产品)中的软材料,具有广泛的应用。它们由缠结或交联的生物聚合物分子网络组成,这些分子网络捕获相对大量的水并提供半固态特性,如粘弹性或塑性。复合生物聚合物水凝胶包含添加剂(填充物)以增强其功能特性,包括固体颗粒、液滴、气泡、纳米纤维或生物细胞。这些填充物在组成、大小、形状、流变学和表面性质方面存在差异,这会影响它们对生物聚合物水凝胶流变学性质的影响。在本文中,综述了用于制备复合水凝胶的各种类型的生物聚合物,重点介绍了来自可持续来源(如植物、藻类或微生物发酵)的可食用蛋白质和多糖。然后讨论了这些生物聚合物表现出的不同凝胶化机制,包括热、冷、离子、pH、酶和压力凝胶机制。然后强调了生物聚合物分子在单一和混合生物聚合物水凝胶中自我组织的不同方式,包括聚合、颗粒、互穿、相分离和共凝胶系统。然后讨论了添加填充物对复合生物聚合物水凝胶流变学性质的影响,包括已开发用于描述这些影响的数学模型。最后,介绍了复合生物聚合物水凝胶的潜在应用,包括作为递送系统、包装材料、人造组织、伤口愈合材料、肉类模拟物、过滤器和吸附剂。本文提供的信息旨在激发对复合生物聚合物水凝胶的开发和应用的进一步研究。

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