首页> 外文期刊>Journal of chromatography, B. Analytical technologies in the biomedical and life sciences >Separation of chlorogenic acid from honeysuckle crude extracts by macroporous resins
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Separation of chlorogenic acid from honeysuckle crude extracts by macroporous resins

机译:大孔树脂从金银花粗提物中分离绿原酸

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摘要

Chlorogenic acid, one of the most bioactive compounds rich in the Chinese medicinal herb honeysuckle, is a natural antioxidant and serves as anti-inflammatory, anti-tumor, anti-mutagenic and anti-carcinogenic agent. An efficient preparative separation process of chlorogenic acid from honeysuckle crude extracts has been developed in the present study. HPD-850 resin offers the best adsorption capacity, and adsorption and desorption ratios for chlorogenic acid among the nine macroporous resins tested, and its adsorption rate at 25 degrees C fit best to the Langmuir isotherm. The adsorption capacity of HPD-850 resin was found to depend strongly on the pH value of the initial adsorption solution. The dynamic adsorption and desorption experiments have been carried out on a HPD-850 resin packed column to optimize the separation process of chlorogenic acid from honeysuckle crude extracts. After one run treatment with HPD-850 resin, the chlorogenic acid content in the final product was increased 4.46-fold from 11.2% to 50.0%, with a recovery yield of 87.9%. The preparative separation of chlorogenic acid can be easily and efficiently achieved via adsorption and desorption on HPD-850 resin, and the method developed will provide a potential approach for large-scale separation and purification of chlorogenic acid for its wide pharmaceutical use. (c) 2008 Elsevier B.V. All rights reserved.
机译:绿原酸是生物活性最强的化合物之一,富含中草药金银花,是一种天然抗氧化剂,具有抗炎,抗肿瘤,抗诱变和抗癌的作用。本研究开发了一种从金银花粗提物中高效分离绿原酸的方法。 HPD-850树脂在所测试的9种大孔树脂中提供了最佳的吸附容量以及绿原酸的吸附和解吸率,其25℃的吸附速率最适合Langmuir等温线。发现HPD-850树脂的吸附能力在很大程度上取决于初始吸附溶液的pH值。在HPD-850树脂填充柱上进行了动态吸附和解吸实验,以优化从金银花粗提物中分离绿原酸的工艺。用HPD-850树脂进行一次运行处理后,最终产品中的绿原酸含量从11.2%增加到50.0%,增加了4.46倍,回收率达到87.9%。绿原酸的制备分离可以通过在HPD-850树脂上的吸附和解吸轻松而有效地实现,开发的方法将为大规模分离和纯化绿原酸提供广泛的药物用途。 (c)2008 Elsevier B.V.保留所有权利。

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