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基于种子胶的递释系统及其在生物活性分子包封中的应用。

Seed gum-based delivery systems and their application in encapsulation of bioactive molecules.

机构信息

Department of Food Science and Technology, College of Agriculture, Isfahan University of Technology, Isfahan, Iran.

Faculty of Food Science and Technology, Gorgan University of Agricultural Sciences and Natural Resources, Gorgan, Iran.

出版信息

Crit Rev Food Sci Nutr. 2023;63(29):9937-9960. doi: 10.1080/10408398.2022.2076065. Epub 2022 May 19.

Abstract

Now-a-days, the food/pharma realm faces with great challenges for the application of bioactive molecules when applying them in free form due to their instability in vitro/in vivo. For promoting the biological and functional properties of bioactive molecules, efficient delivery systems have played a pivotal role offering a controlled delivery and improved bioavailability/solubility of bioactives. Among different carbohydrate-based delivery systems, seed gum-based vehicles (SGVs) have shown great promise, facilitating the delivery of a high concentration of bioactive at the site of action, a controlled payload release, and less bioactive loss. SGVs are potent structures to promote the bioavailability, beneficial properties, and in vitro/in vivo stability of bioactive components. Here, we offer a comprehensive overview of seed gum-based nano- and microdevices as delivery systems for bioactive molecules. We have a focus on structural/functional attributes and health-promoting benefits of seed gums, but also strategies involving modification of these biopolymers are included. Diverse SGVs (nano/microparticles, functional films, hydrogels/nanogels, particles for Pickering nanoemulsions, multilayer carriers, emulsions, and complexes/conjugates) are reviewed and important parameters for bioactive delivery are highlighted (e.g. bioactive-loading capacity, control of bioactive release, (bio)stability, and so on). Future challenges for these biopolymer-based carriers have also been discussed. HighlightsSeed gum-based polymers are promising materials to design different bioactive delivery systems.Seed gum-based delivery systems are particles, fibers, complexes, conjugates, hydrogels, etc.Seed gum-based vehicles are potent structures to promote the bioavailability, beneficial properties, and in vitro/in vivo stability of bioactive components.

摘要

如今,由于生物活性分子在体外/体内的不稳定性,食品/制药领域在应用游离形式的生物活性分子时面临着巨大的挑战。为了提高生物活性分子的生物和功能特性,有效的递送系统发挥了关键作用,提供了生物活性分子的控制递送和提高生物利用度/溶解度。在不同的基于碳水化合物的递送系统中,基于种子胶的载体(SGV)显示出巨大的潜力,能够在作用部位递送高浓度的生物活性物质,控制载药释放,并减少生物活性物质的损失。SGV 是促进生物活性成分生物利用度、有益性质和体外/体内稳定性的有效结构。在这里,我们全面概述了基于种子胶的纳米和微器件作为生物活性分子的递送系统。我们重点介绍了种子胶的结构/功能特性和促进健康的益处,但也包括了这些生物聚合物的改性策略。综述了不同的 SGV(纳米/微颗粒、功能薄膜、水凝胶/纳米凝胶、用于 Pickering 纳米乳液的颗粒、多层载体、乳液和复合物/缀合物),并强调了生物活性递送的重要参数(例如,生物活性负载能力、生物活性释放控制、(生物)稳定性等)。还讨论了这些基于生物聚合物的载体的未来挑战。

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