EVALUACIÓN DEL PERFIL DE ÁCIDOS GRASOS DE ISOCHRYSIS GALBANA MEDIANTE EL USO DE MÉTODOS ÁCIDOS Y ALCALINOS DE TRANSESTERIFICACIÓN

Elena Medina-Pérez, María C. Ruiz-Domínguez, Juan Morales-Espinoza, P. Cerezal-Mezquita
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引用次数: 2

Abstract

Isochrysis galbana is a marine microalga which highlights by containing a great diversity of antioxidant biomolecules. It shows a high content of lipids that can be used in aquaculture and biofuel, its high polyunsaturated fatty acid profile such as DHA (docosahexaenoic acid) or for having high fucoxanthin content (carotenoid group). For a century, this microalga is very well known as feed for bivalves, larva of fish, crustaceans, and mollusks. Transesterification is the necessary reaction to be able to derivative the fatty acids in methylated fatty acids (AGM) and thus be able to identify and quantify them. It is a key step to optimize and therefore know the improvement of the obtained fatty acid profile of study biomass. Hence, this work presents the significant difference of eight methods for obtaining fatty acids from the direct and indirect transesterification reaction (MTD and MTI, respectively). Moreover, acidic and alkaline catalysts were also used (AC1, AC2 and AL1 and AL2). The results presented better contents of AGMs (methylated fatty acids) respecting dry biomass in the MTD-AL1 method with ~ 6% and a relative abundance of DHA of ~ 12 % in MTI-AL2. In addition, the most abundant fatty acid profile was MTD-AL2 with 57.66 % in polyunsaturated. On the other hand, thanks to the addition of an internal standard in the experiences, it was possible to identify that the MTD-AL1 and MTI-AC1 methods were the most efficient in the transesterification obtained with ~ 93 % and ~ 87 % , respectively. Therefore, the method that is selected for the correct reading of fatty acids present in any biomass is relevant to detect a profile with more unsaturation as has been purchased with the microalga I. galbana.
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用酸和碱酯交换反应方法评价GALBANA等缩合脂肪酸谱
galbana等溶藻是一种海洋微藻,其特点是含有丰富的抗氧化生物分子。它显示出可用于水产养殖和生物燃料的高脂含量,其高多不饱和脂肪酸谱,如DHA(二十二碳六烯酸)或具有高岩藻黄素含量(类胡萝卜素族)。一个世纪以来,这种微藻作为双壳类、鱼类、甲壳类和软体动物的幼虫的饲料而闻名。酯交换反应是能够衍生甲基化脂肪酸(AGM)中的脂肪酸,从而能够识别和量化它们的必要反应。这是一个关键的步骤,因此优化和了解所获得的脂肪酸谱的改进研究生物质。因此,本研究提出了从直接和间接酯交换反应(MTD和MTI)中获得脂肪酸的八种方法的显著差异。此外,还使用了酸性和碱性催化剂(AC1、AC2和AL1、AL2)。结果表明,MTD-AL1法对干生物量的AGMs(甲基化脂肪酸)含量为~ 6%,MTI-AL2法的DHA相对丰度为~ 12%。其中,MTD-AL2脂肪酸含量最高,占多不饱和脂肪酸的57.66%。另一方面,由于在实验中增加了内标,可以确定MTD-AL1和MTI-AC1方法的酯交换效率最高,分别为~ 93%和~ 87%。因此,选择用于正确读取任何生物质中存在的脂肪酸的方法,与检测具有更多不饱和的剖面相关,因为已经购买了微藻I. galbana。
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审稿时长
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