University of Veterinary and Animal Sciences, Department of Fisheries and Aquaculture, Lahore, Pakistan.
University of Veterinary & Animal Sciences, Department of Wildlife & Ecology, Lahore, Pakistan.
Braz J Biol. 2021 Oct 29;84:e254010. doi: 10.1590/1519-6984.254010. eCollection 2021.
The impact of fish oil concentration on the oxidative stability of microcapsules through the spray drying process using chitosan and maltodextrin as wall material was studied. Emulsions were prepared with different Tuna fish oil (TFO) content (TFO-10%, TFO20%, TF030% TF0-40%) while wall material concentration was kept constant. Microencapsulated powder resulting from emulsion prepared with high fish oil load have high moisture content, wettability, total oil and low encapsulation efficiency, hygroscopicity and bulk tapped density. Oxidative stability was evaluated periodically by placing microcapsules at room temperature. Microcapsules prepared with TFO-10% presented high oxidative stability in terms of peroxide value (2.94±0.04) and anisidine value (1.54±0.02) after 30 days of storage. It was concluded that optimal amounts of fish oil for microencapsulation are 10% and 20% using chitosan and maltodextrin that extended its shelf life during study period.
研究了使用壳聚糖和麦芽糊精作为壁材的喷雾干燥过程中鱼油浓度对微胶囊氧化稳定性的影响。制备了不同金枪鱼油(TFO)含量(TFO-10%、TFO20%、TF030%、TF0-40%)的乳液,而壁材浓度保持不变。高鱼油负荷乳液制备的微囊粉末具有高水分含量、润湿性、总油含量和低包封效率、吸湿性和散装振实密度。通过将微胶囊放置在室温下定期评估氧化稳定性。在储存 30 天后,以过氧化物值(2.94±0.04)和茴香胺值(1.54±0.02)衡量,TFO-10%微胶囊的氧化稳定性最高。结论是,使用壳聚糖和麦芽糊精进行微囊化的最佳鱼油用量为 10%和 20%,在研究期间延长了其保质期。