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乳剂与赋形剂乳剂作为 α-生育酚递送系统:配方优化及体外消化条件下的行为。

Emulsions vs excipient emulsions as α-tocopherol delivery systems: Formulation optimization and behaviour under in vitro digestion.

机构信息

Centre of Biological Engineering, University of Minho Braga, Portugal.

Centre of Biological Engineering, University of Minho Braga, Portugal.

出版信息

Food Res Int. 2024 Sep;192:114743. doi: 10.1016/j.foodres.2024.114743. Epub 2024 Jul 9.

Abstract

Oil-in-water emulsions (EM) have been extensively used for the encapsulation of lipophilic bioactive compounds and posterior incorporation into food matrices to obtain functional foods. Conversely, novel excipient oil-in-water emulsions (EXC) present identical composition and structure as EM, albeit are not bioactive by themselves since no bioactive compound is encapsulated. Instead, EXC aims at improving the bioavailability of foods' natural bioactive compounds upon co-ingestion with nutrient-rich foods. In this work, EM and EXC were produced and their stability and functionality as delivery systems for α-tocopherol compared. Emulsions were formulated with corn oil and lecithin, and their composition was optimized using experimental designs. Formulations produced with 3 % lecithin and 5 % oil attained smallest particles sizes with the lowest polydispersity index of all tested formulations and remained stable up to 60 days. Encapsulation of α-tocopherol did not have a significative impact on the structural properties of the particles produced with the same composition. α-tocopherol stability during in vitro digestion was superior in EM regardless the processing methodology (EM stability < 50 %, EXC stability < 29 %), indicating that EM offered greater protection against the digestive environment. α-tocopherol's bioaccessibility was significantly increased when encapsulated or when digested with added excipient emulsions (82-92 % and 87-90 % for EM and EXC, respectively). In conclusion, EM were more efficient vehicles for the selected bioactive compound, however, the good results obtained with EXC imply that excipient emulsions have a great potential for applications on foods to improve their natural bioactive compounds' bioavailability without the need of further processing.

摘要

水包油乳液 (EM) 已被广泛用于包封脂溶性生物活性化合物,并随后将其掺入食品基质中以获得功能性食品。相反,新型赋形剂水包油乳液 (EXC) 的组成和结构与 EM 相同,但本身没有生物活性,因为没有包封生物活性化合物。相反,EXC 旨在通过与富含营养的食物共同摄入来提高食物中天然生物活性化合物的生物利用度。在这项工作中,制备了 EM 和 EXC,并比较了它们作为 α-生育酚递送系统的稳定性和功能。用玉米油和卵磷脂制备乳液,并使用实验设计优化其组成。用 3%卵磷脂和 5%油制备的配方具有所有测试配方中最小的颗粒尺寸和最低的多分散指数,并且在 60 天内保持稳定。α-生育酚的包封对用相同组成制备的颗粒的结构性质没有显著影响。在体外消化过程中,EM 中的 α-生育酚稳定性无论加工方法如何(EM 稳定性<50%,EXC 稳定性<29%)都更好,这表明 EM 对消化环境提供了更大的保护。当用添加的赋形剂乳液包封或消化时,α-生育酚的生物利用度显著增加(EM 和 EXC 分别为 82-92%和 87-90%)。总之,EM 是所选生物活性化合物的更有效的载体,然而,EXC 获得的良好结果表明赋形剂乳液在改善食物中天然生物活性化合物的生物利用度方面具有很大的应用潜力,而无需进一步加工。

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