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天然大分子作为精油载体:从提取到生物医学应用

Natural Macromolecules as Carriers for Essential Oils: From Extraction to Biomedical Application.

作者信息

Dajic Stevanovic Zora, Sieniawska Elwira, Glowniak Kazimierz, Obradovic Natasa, Pajic-Lijakovic Ivana

机构信息

Faculty of Agriculture, University of Belgrade, Belgrade, Serbia.

Department of Pharmacognosy, Medical University of Lublin, Lublin, Poland.

出版信息

Front Bioeng Biotechnol. 2020 Jun 25;8:563. doi: 10.3389/fbioe.2020.00563. eCollection 2020.

Abstract

Essential oils (EOs) and their main constituents, the terpenes, are widely studied, mostly relating to their antioxidant ability and bioactivity, such as antimicrobial, anticancer, anti-inflammatory, and range of other actions in the living systems. However, there is limited information on their bioavailability, especially upon clinical studies. Having in mind both strong biological effects and health benefits of EOs and their specific physicochemical properties (volatility, lipophilic character, low water solubility or insolubility, viscosity, expressed odor, concentration-dependent toxicity, etc.), there is a need for their encapsulation for target delivery. Encapsulation of EOs and their constituents is the prerequisite for enhancing their oxidative stability, thermostability, photostability, shelf life, and biological activity. We considered various carrier types such a (1) monophase and polyphase polysaccharide hydrogel carriers, (2) polysaccharide-protein carriers, and (3) lipid carriers in the context of physicochemical and engineering factors. Physicochemical factors are encapsulation efficiency, chemical stability under gastric conditions, mechanical stability, and thermal stability of carrier matrices. Choice of carrier material also determines the encapsulation technique. Consequently, the engineering factors are related to the advantage and disadvantage of various encapsulation techniques frequently used in the literature. In addition, it was intended to address the interactions between (1) main carrier components, such as polysaccharides, proteins, and lipids themselves (in order to form chemically and mechanically stable structure); (2) main carrier components with pepsin under gastric conditions (in order to form resistant material under gastric conditions); and (3) main carrier components with EOs (in order to enhance encapsulation efficiency), as a necessary precondition for whole process optimization. Finally, different sources for obtaining natural carrier macromolecules are surveyed, especially the agro-waste materials and agricultural and food by-products. This review article highlights the bioavailability aspects of encapsulated EOs and physicochemical and engineering factors concerning natural macromolecule carriers for their target delivery and application.

摘要

精油(EOs)及其主要成分萜类化合物受到广泛研究,主要涉及其抗氧化能力和生物活性,如抗菌、抗癌、抗炎以及在生物系统中的一系列其他作用。然而,关于它们的生物利用度的信息有限,尤其是在临床研究方面。考虑到精油及其特定的物理化学性质(挥发性、亲脂性、低水溶性或不溶性、粘度、明显气味、浓度依赖性毒性等)所具有的强大生物效应和健康益处,需要对其进行包封以实现靶向递送。精油及其成分的包封是提高其氧化稳定性、热稳定性、光稳定性、保质期和生物活性的前提条件。我们从物理化学和工程因素的角度考虑了各种载体类型,例如(1)单相和多相多糖水凝胶载体,(2)多糖 - 蛋白质载体,以及(3)脂质载体。物理化学因素包括包封效率、在胃部条件下的化学稳定性、机械稳定性以及载体基质的热稳定性。载体材料的选择也决定了包封技术。因此,工程因素与文献中常用的各种包封技术的优缺点相关。此外,旨在探讨(1)主要载体成分之间的相互作用,例如多糖、蛋白质和脂质本身(以形成化学和机械稳定的结构);(2)主要载体成分在胃部条件下与胃蛋白酶的相互作用(以在胃部条件下形成抗性材料);以及(3)主要载体成分与精油的相互作用(以提高包封效率),作为整个过程优化的必要前提。最后,对获取天然载体大分子的不同来源进行了调查,特别是农业废弃物以及农业和食品副产品。这篇综述文章强调了包封精油的生物利用度方面以及关于用于其靶向递送和应用的天然大分子载体的物理化学和工程因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8492/7330110/cfcc4882024e/fbioe-08-00563-g0003.jpg

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