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A process for high yield and scaleable recovery of high purity eicosapentaenoic acid esters from microalgae and fish oil

机译:从微藻和鱼油中高收率和可规模回收高纯度二十碳五烯酸酯的方法

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摘要

A low expense process is developed for recovering esterified eicosapentaenoic acid (EPA) from microalgae and fish oil. Over 70% of the EPA content in the esterified crude extract of microalgae were recovered at purities exceeding 90%. The recovery scheme utilizes either wet or freeze-dried algal biomass. The process consists of only three main steps: 1) simultaneous extraction and transesterification of the algal biomass; 2) argentated silica gel column chromatography of the crude extract; and 3) removal of pigments by a second column chromatographic step. Argentated silica gel chromatography recovered about 70% of the EPA ester present in the crude fatty ester mixture of fish oil, but at a reduced purity (similar to 83% pure) compared to the microalgal derived EPA. The optimal loading of the fatty ester mixture on the chromatographic support was about 3% (w/w) but loadings up to 4% did not affect the resolution significantly. The process was scaled up by a factor of nearly 320 by increasing the diameter of the chromatography columns. The elution velocity remained constant. Compared to the green alga Monodus subterraneus, the diatom Phaeodactylum tricornutum bad important advantages as a potential commercial producer of EPA. For a microalgal EPA process to be competitive with fish oil derived EPA, P. tricornutum biomass (2.5% w/w EPA) needs to be obtained at less than
机译:开发了一种用于从微藻类和鱼油中回收酯化二十碳五烯酸(EPA)的低成本方法。微藻酯化粗提物中的EPA含量超过70%,纯度超过90%。回收方案利用了湿的或冻干的藻类生物质。该过程仅包含三个主要步骤:1)同时提取和酯交换藻类生物质; 2)粗提取物的硅胶柱层析; 3)通过第二柱色谱步骤除去颜料。银色硅胶色谱法回收了鱼油粗脂肪酯混合物中约70%的EPA酯,但与微藻衍生的EPA相比,纯度降低了(近似83%的纯度)。脂肪酸酯混合物在色谱载体上的最佳负载量约为3%(w / w),但负载量高达4%不会显着影响分离度。通过增加色谱柱的直径,该过程的规模扩大了近320倍。洗脱速度保持恒定。与绿藻Monodus subterraneus相比,硅藻Phaeodactylum tricornutum具有作为EPA潜在商业生产商的重要优势。为了使微藻EPA工艺与源自鱼油的EPA竞争,需要以低于20℃的温度获得三角果假单胞菌生物量(2.5%w / w EPA)。

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