首页> 外文期刊>Journal of liquid chromatography and related technologies >Preparative Separation of γ‐Oryzanol from Rice Bran Oil by Silica Gel Column Chromatography
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Preparative Separation of γ‐Oryzanol from Rice Bran Oil by Silica Gel Column Chromatography

机译:硅胶柱色谱法从米糠油中分离制备γ-谷维素

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γ-Oryzanol is considered to be an important fraction in rice bran oil. Due to the low concentration levels (1–3%) of γ-oryzanol in crude rice bran oil (CRBO), isolation and purification would be necessary before practical usage. This study developed an efficient and easy-to-scale-up chromatographic separation method for the production of γ-oryzanol. First, the CRBO was prepared using a Soxhlet extractor operated under an optimal extraction condition (using 130 mL of hexane for 2 hr per 15 g rice bran). The extraction yield was 16–18% (w/w) and the purity of γ-oryzanol was 2.4–3.0% (w/w). Then, γ-oryzanol in the CRBO was purified by preparative elution chromatography under the normal phase mode. Column operation was optimized by using a silica gel column packed with small particles (12 μm) and operated by a three-step gradient elution mode, where the mobile phase composition of hexane/ethyl acetate was from 90:10 or 85:15 to 50:50 v/v to pure ethyl acetate. The injection amount was increased as large as possible but had to be within its solubility limit (about 30–35 wt/vol%). The system performance achieved was as follows: the recovery of γ-oryzanol was about 90 + %, the purity of γ-oryzanol was up to 90–98% (the ratio of concentration was about 30 + % times), but the productivity was only about 10 mg per injection, which needs to be further increased by scaling-up the column system.
机译:γ-谷维素被认为是米糠油中的重要部分。由于粗米糠油(CRBO)中的γ-谷维素浓度较低(1-3%),因此在实际使用之前有必要进行分离和纯化。这项研究开发了一种高效且易于按比例放大的色谱分离方法,用于生产γ-谷维素。首先,使用在最佳提取条件下运行的索氏提取器(每15克米糠使用130毫升己烷2小时)制备CRBO。提取产率为16–18%(w / w),γ-谷维素的纯度为2.4–3.0%(w / w)。然后,通过制备型洗脱色谱法在正相模式下纯化CRBO中的γ-谷维素。色谱柱操作通过使用装有小颗粒(12μm)的硅胶柱进行优化,并通过三步梯度洗脱模式进行操作,其中己烷/乙酸乙酯的流动相组成为90:10或85:15至50 :50 v / v至纯乙酸乙酯。进样量应尽可能增加,但必须在其溶解度极限(约30–35 wt / vol%)之内。达到的系统性能如下:γ-谷维素的回收率约为90 +%,γ-谷维素的纯度高达90-98%(浓度比约为30 +%倍),但产率为每次进样仅约10 mg,需要通过按比例放大色谱柱系统来进一步增加。

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