Fats and Oils Department, National Research Centre, Egypt.
Chemistry Department, Faculty of Science, Ain Shams University, Egypt.
Int J Biol Macromol. 2019 Nov 1;140:682-696. doi: 10.1016/j.ijbiomac.2019.08.085. Epub 2019 Aug 9.
Omega-3 fatty acids can be considered as potential alternative therapeutic agents because of their antimicrobial and antioxidant properties. Two investigated omega-3 rich oils (flaxseed or fish) have been nanoemulsified with and without the natural antioxidant (curcumin, Cur) followed by their incorporation into crosslinked polymeric microbeads. The microbeads were developed from chitosan (CS), alginate (AL) and their combination (CSAL). Results indicated that the mean droplet diameter of the plain and Cur-loaded nanoemulsions ranged from 62.3 to 111.29 nm. The microbeads produced from AL, CS and their combination without Cur had predominantly shriveled surfaces compared to Cur-loaded ones. Addition of Cur was found to enhance oxidative stability, encapsulation efficiency, loading capacity, and antioxidant activity of the formulated microbeads. Plain fish oil revealed more antibacterial activity than plain flaxseed oil. Fish oil nanoemulsion-in-AL microbeads had more antibacterial activity than nanoemulsions of flaxseed oil-in-AL, fish oil-in-CS and the combined (CSAL) microbeads. However, flaxseed oil nanoemulsion-in-CS microbeads showed higher antibacterial activity than nanoemulsions of fish oil-in-CS, flaxseed oil-in-AL and the combined microbeads. The obtained results suggested the suitability of the formulated nanoemulsions-loaded microbeads to be used in food and pharmaceuticals products.
ω-3 脂肪酸因其具有抗菌和抗氧化特性,可被视为有潜力的替代治疗药物。两种经过研究的富含 ω-3 的油(亚麻籽油或鱼油)已被纳米乳化,其中一些还添加了天然抗氧化剂(姜黄素,Cur),然后将其掺入交联聚合物微珠中。这些微珠是由壳聚糖(CS)、海藻酸钠(AL)及其组合(CSAL)开发而成。结果表明,普通和载有 Cur 的纳米乳液的平均液滴直径范围为 62.3 至 111.29nm。与载有 Cur 的微珠相比,由 AL、CS 及其组合制成但不含 Cur 的微珠的表面主要呈皱缩状。添加 Cur 被发现可以提高配方微珠的氧化稳定性、包封效率、载药量和抗氧化活性。普通鱼油的抗菌活性强于普通亚麻籽油。鱼油纳米乳液-AL 微珠的抗菌活性强于亚麻籽油纳米乳液-AL、鱼油纳米乳液-CS 和组合(CSAL)微珠。然而,亚麻籽油纳米乳液-CS 微珠的抗菌活性高于鱼油纳米乳液-CS、亚麻籽油纳米乳液-AL 和组合微珠。研究结果表明,所制备的载有纳米乳液的微珠适合用于食品和制药产品。