Nutrition and Food Service Research Center, Federal University of São Paulo (UNIFESP), Campus Baixada Santista SP 11015-020, Brazil.
Department of Food Technology and Science, Federal University of Santa Maria (UFSM), Santa Maria, RS 97105-900, Brazil.
Food Res Int. 2023 Dec;174(Pt 1):113593. doi: 10.1016/j.foodres.2023.113593. Epub 2023 Oct 14.
Color is a crucial sensory attribute that guides consumer expectations. A high-performance pequi carotenoid extraction process was developed using ionic liquid-based ethanolic solutions and a factorial design strategy to search for a potential substitute for the artificial azo dye yellow tartrazine. All-trans-antheraxanthin was identified with HPLC-PAD-MSn for the first time in pequi samples. [BMIM][BF4] was the most efficient ionic liquid, and the maximization process condition was the solid-liquid ratio R of 1:3, the co-solvent ratio R of 1:1 ([BMIM][BF4]: ethanol), and three cycles of extraction with 300 s each and yielded 107.90 μg carotenoids/g of dry matter. The ionic liquid-ethanolic solution recyclability was accomplished by freezing and precipitating with an average recovery of 79 %. In CIELAB parameters, pequi carotenoid extracted with [BMIM][BF4] was brighter and yellower than the artificial azo dye yellow tartrazine. A color change of 11.08 and a hue* difference of 1.26° were obtained. Furthermore, carotenoids extracted with [BMIM][BF4] showed antioxidant activity of 35.84 μmol of α-tocopherol. These findings suggest the potential of employing the pequi carotenoids to replace the artificial azo dye yellow tartrazine in foods for improved functional properties.
颜色是指导消费者预期的关键感官属性。使用基于离子液体的乙醇溶液和析因设计策略开发了一种高性能的枇果类胡萝卜素提取工艺,以寻找人工偶氮染料柠檬黄的潜在替代品。首次在枇果样品中通过 HPLC-PAD-MSn 鉴定出全反式角黄素。[BMIM][BF4]是最有效的离子液体,最优化过程条件为固液比 R 为 1:3、共溶剂比 R 为 1:1([BMIM][BF4]:乙醇)和 3 次提取,每次 300s,产率为 107.90μg 类胡萝卜素/g 干物质。通过冷冻和沉淀实现了离子液体-乙醇溶液的可回收利用,平均回收率为 79%。在 CIELAB 参数中,用[BMIM][BF4]提取的枇果类胡萝卜素比人工偶氮染料柠檬黄更亮、更黄。获得了 11.08 的颜色变化和 1.26°的色调*差异。此外,用[BMIM][BF4]提取的类胡萝卜素具有 35.84μmol α-生育酚的抗氧化活性。这些发现表明,在食品中使用枇果类胡萝卜素替代人工偶氮染料柠檬黄具有改善功能特性的潜力。