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逐步梯度在逆流色谱中的应用:从Seseli resinosum 中一步分离八种香豆素的快速经济策略。

Application of stepwise gradients in counter-current chromatography: a rapid and economical strategy for the one-step separation of eight coumarins from Seseli resinosum.

机构信息

Natural Products Research Institute, College of Pharmacy, Seoul National University, Seoul 151-742, Republic of Korea; Department of Pharmacy, Abdul Wali Khan University, Mardan, Pakistan.

出版信息

J Chromatogr A. 2013 Oct 4;1310:66-73. doi: 10.1016/j.chroma.2013.08.033. Epub 2013 Aug 16.

Abstract

The targeted purification of compounds with a broad polarity range from traditional medicinal plants is a big challenge for counter-current chromatography (CCC). Gradient elution was introduced in CCC to address this problem. However, once a suitable solvent system is selected, the separation process requires optimization of operational parameters. The present study was conducted to optimize various operational parameters to integrate the flow rate and solvent gradients for the rapid isolation of eight coumarins from Seseli resinosum in a single run. An increase in the system temperature from 15°C to 35°C increased the stationary phase retention and solubility of the sample, whereas the operation time and viscosity of the system were decreased. The high purity of each compound was ensured by collecting the fractions from the main peaks while all the shoulder peaks were mixed and separated under the same conditions with semi-preparative CCC. GC-FID was used to analyze the components of each phase, which was prepared without presaturation to save the time and solvent consumption. Finally, eight coumarins were purified, including (1) d-laserpitin, (2) (3'S,4'S)-3'-angeloyloxy-4'-hydroxy-3',4'-dihydroseselin, (3) (+)-samidin, (4) (3'S,4'S)-3'-acetoxy-4'-angeloyloxy-3',4'-dihydroseselin, (5) deltoin (6), calipteryxin, (7) (3'S,4'S)-3',4'-disenecioyloxy-3',4'-dihydroseselin, and (8) (-)-anomalin. The present technique has successfully accomplished the goal of one-step separation of these compounds with high purity and recovery in an economic and time efficient manner.

摘要

从传统药用植物中靶向纯化具有较宽极性范围的化合物是逆流色谱(CCC)面临的一大挑战。梯度洗脱被引入 CCC 以解决此问题。然而,一旦选择了合适的溶剂系统,分离过程就需要优化操作参数。本研究旨在优化各种操作参数,以整合流速和溶剂梯度,在单次运行中从Seseli resinosum 中快速分离出八种香豆素。将系统温度从 15°C 升高到 35°C,增加了固定相的保留和样品的溶解度,同时减少了操作时间和系统的粘度。通过在主峰上收集馏分,确保了每个化合物的高纯度,而所有肩峰则在相同条件下与半制备 CCC 混合和分离。GC-FID 用于分析每个相的成分,这些相无需预饱和即可节省时间和溶剂消耗。最后,纯化了八种香豆素,包括(1)d-laserpitin,(2)(3'S,4'S)-3'-angeloyloxy-4'-hydroxy-3',4'-dihydroseselin,(3)(+)-samidin,(4)(3'S,4'S)-3'-acetoxy-4'-angeloyloxy-3',4'-dihydroseselin,(5)deltoin(6),calipteryxin,(7)(3'S,4'S)-3',4'-disenecioyloxy-3',4'-dihydroseselin 和(8)(-)-anomalin。本技术成功实现了以经济高效的方式一步分离这些高纯度和高回收率化合物的目标。

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