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A Continuous Procedure Based on Column Chromatography to Purify Anthocyanins from Schisandra chinensis by a Macroporous Resin plus Gel Filtration Chromatography

机译:大孔树脂加凝胶过滤色谱法连续分离柱五味子中花色苷的柱色谱法

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摘要

In our previous study, as natural food colorants and antioxidants, the color and content stabilities of Schisandra chinensis (S. chinensis) anthocyanins were investigated. In this work, the purification process parameters of S. chinensis anthocyanins using a macroporous resin and gel filtration chromatography were evaluated. The optimized parameters of static adsorption and desorption were as follows. The selected resin is HPD-300 (nonpolar copolymer styrene type resin), and the anthocyanins adsorption saturation capacity of HPD-300 resin was 0.475 mg/g dry resin. Adsorption time was 4 h, and 0.517 mg/mL of S. chinensis anthocyanins was adsorbed on the resin column with a flow rate of 39 mL/h (3 BV/h). After adsorption, the anthocyanins were completely desorpted with 2.5 BV of 90% (v/v) ethanol solution, and the desorption flow rate was 13 mL/h (1 BV/h). After purification by dynamic adsorption and desorption, the anthocyanins content in the effluent increased from 47.6 mg/g to 128.4 mg/g, the purity of anthocyanins increased six-fold from 5.08% to 30.43%, and the anthocyanins recovery was 96.5%. The major constituent of S. chinensis anthocyanins was isolated with Bio-Gel P2 gel filtration chromatography, and it was detected by liquid chromatography electrospray ionisation tandem mass spectrometry (LC-ESI-MS) as cyanidin-3-O-xylosylrutinoside. Moreover, the antioxidant activities of S. chinensis anthocyanins were investigated. After purification using the HPD-300 resin, the antioxidant activities of anthocyanins were increased 1.2-fold (FRAP) and 1.7-fold (ABTS).
机译:在我们以前的研究中,作为天然食用色素和抗氧化剂,对五味子花青素的颜色和含量稳定性进行了研究。在这项工作中,评估了使用大孔树脂和凝胶过滤色谱法纯化的中华沙棘花色苷的纯化工艺参数。静态吸附和解吸的优化参数如下。所选择的树脂是HPD-300(非极性共聚物苯乙烯型树脂),并且HPD-300树脂的花色苷吸附饱和容量是0.475mg / g干树脂。吸附时间为4 h,0.539 mg / mL的中国链球菌花色苷以39 mL / h(3 BV / h)的流速吸附在树脂柱上。吸附后,用2.5 BV的90%(v / v)乙醇溶液完全解吸花青素,解吸流速为13 mL / h(1 BV / h)。通过动态吸附和解吸纯化后,废水中的花色苷含量从47.6 mg / g增加到128.4 mg / g,花色苷的纯度从5.08%增加到30.43%,增加了六倍,花色苷的回收率为96.5%。用Bio-Gel P2凝胶过滤色谱法分离了中华链球菌花色苷的主要成分,并通过液相色谱电喷雾串联质谱(LC-ESI-MS)将其检测为花青素-3-O-木糖基芸苔苷。此外,还研究了中华S花色苷的抗氧化活性。使用HPD-300树脂纯化后,花色苷的抗氧化活性提高了1.2倍(FRAP)和1.7倍(ABTS)。

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