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Nanostructured Lipid-Based Delivery Systems as a Strategy to Increase Functionality of Bioactive Compounds

机译:纳米结构脂质为基础的传递系统以增加生物活性化合物的功能的策略。

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摘要

Acquisition of a healthy lifestyle through diet has driven the food manufacturing industry to produce new food products with high nutritional quality. In this sense, consumption of bioactive compounds has been associated with a decreased risk of suffering chronic diseases. Nonetheless, due to their low solubility in aqueous matrices, high instability in food products during processing and preparation as well as poor bioavailability, the use of such compounds is sometimes limited. Recent advancements in encapsulation and protection of bioactive compounds has opened new possibilities for the development of novel food products. In this direction, the present review is attempting to describe encapsulation achievements, with special attention to nanostructured lipid-based delivery systems, i.e., nanoemulsions, multi-layer emulsions and liposomes. Functionality of bioactive compounds is directly associated with their bioavailability, which in turn is governed by several complex processes, including the passage through the gastrointestinal tract and transport to epithelial cells. Therefore, an overview of recent research on the properties of these nanostructured lipid-based delivery systems with a strong impact on the functionality of bioactive compounds will be also provided. Nanostructured lipid-based delivery systems might be used as a potential option to enhance the solubility, stability, absorption and, ultimately, functionality of bioactive compounds. Several studies have been performed in this line, modifying the composition of the nanostructures, such as the lipid-type or surfactants. Overall, influencing factors and strategies to improve the efficacy of encapsulated bioactive compounds within nanostructures have been successfully identified. This knowledge can be used to design effective targeted nanostructured lipid-based delivery systems for bioactive compounds. However, there is still a lack of information on food interactions, toxicity and long-term consumption of such nanostructures.
机译:通过饮食获得健康的生活方式促使食品制造行业生产出具有高营养品质的新食品。从这个意义上讲,生物活性化合物的消费与患慢性病的风险降低有关。但是,由于它们在水性基质中的溶解度低,在加工和制备过程中在食品中的高度不稳定性以及不良的生物利用度,因此有时限制了此类化合物的使用。生物活性化合物的封装和保护方面的最新进展为新型食品的开发开辟了新的可能性。在这个方向上,本综述试图描述包封的成就,特别注意基于纳米结构脂质的递送系统,即纳米乳剂,多层乳剂和脂质体。生物活性化合物的功能性与它们的生物利用度直接相关,而生物利用度又由几个复杂的过程控制,包括通过胃肠道和运输到上皮细胞。因此,还将提供对这些基于纳米结构的脂质的递送系统的性质的近期研究的概述,这些研究对生物活性化合物的功能具有重大影响。基于纳米结构脂质的递送系统可以用作增强生物活性化合物的溶解性,稳定性,吸收性以及最终其功能的潜在选择。在这方面已经进行了一些研究,以改变纳米结构的组成,例如脂质型或表面活性剂。总体而言,已经成功地确定了提高纳米结构内包封的生物活性化合物功效的影响因素和策略。该知识可用于设计生物活性化合物的有效靶向纳米结构脂质基递送系统。然而,仍然缺乏有关这种纳米结构的食物相互作用,毒性和长期食用的信息。

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