Application of Partial Hydrolysis of Virgin Coconut oil (VCO) on Carrageenan-based Edible Coatinng as (Sphyraena barracuda) Fishball Preservative during Room Storage

Erpiani Siregar, J. Silalahi, D. Suryanto
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Abstract

Food spoilage during storage occurs physically, chemically and biologically which is related to the activity of bacteria. One of the natural preservation that is currently developing is the application of edible coating on perishable food, such as fishball. Addition of antibacterial agent is important to improve edible coating. Virgin coconut oil contains medium chain fatty acids which have antimicrobial properties, particularly monoglycerides and free fatty acids that produced by hydrolyzing partially triglycerides at the Sn-1 and Sn-3 position using Lipozyme. The aim of this research was to test the effect of edible coating carrageenan enriched with virgin coconut oil hydrolysis (HVCO) (concentrations 1%,3%,5%) on fishball quality.The method was an experimental with factorial completely randomized design.The samples were analyzed for sensorial assessments, Total plate Count, Total Volatile Base-Nitrogen, Water content, and pH for 5 days at room temperature. The study demonstrated that fish meatball coated with carrageenan based-edible coating fortified with HVCO showed the best result compared to controls (Uncoated fishball, coated without HVCO). Sensory attributes were still accepted by panelists until 3 days. Meanwhile, the same pattern depicted by TPC and TVB-N parameters. HVCO5% had inhibited microbial growth and retarded the increase of TVB-N number on fishball, the results were Log 5,08cfu/gr, 29,69 mg/100 gr respectively.
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初榨椰子油(VCO)部分水解在卡拉胶基食用涂料中作为梭鱼鱼丸防腐剂的应用
食品在贮存过程中会发生物理、化学和生物学上的变质,这与细菌的活动有关。目前正在开发的一种自然保鲜技术是可食用涂层在易腐食品(如鱼丸)上的应用。抗菌剂的添加是改善食用涂层质量的重要手段。初榨椰子油含有具有抗菌特性的中链脂肪酸,特别是单甘油三酯和游离脂肪酸,这些脂肪酸是用Lipozyme水解Sn-1和Sn-3位置的部分甘油三酯产生的。本研究的目的是测试富含初榨椰子油水解(HVCO)(浓度为1%,3%,5%)的食用涂层角叉菜胶对鱼丸质量的影响。方法采用全随机试验设计。在室温下对样品进行感官评估、总平板计数、总挥发性碱-氮、含水量和pH值分析5天。研究表明,涂有加HVCO的卡拉胶基食用涂层的鱼丸与对照组(未涂有HVCO的鱼丸)相比,效果最好。直到第3天,小组成员仍然接受感官属性。同时,TPC和TVB-N参数描述了相同的模式。HVCO5%抑制鱼丸上微生物生长,延缓TVB-N数量的增加,结果分别为Log 5、Log 08、Log 29、Log 69 mg/100 gr。
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