色谱 ›› 2017, Vol. 35 ›› Issue (8): 848-854.DOI: 10.3724/SP.J.1123.2017.04014

• 研究论文 • 上一篇    下一篇

胰岛素反相制备色谱的方法开发

潘剑, 陶云国   

  1. 海正药业(杭州)有限公司, 浙江 杭州 311404
  • 收稿日期:2017-04-13 出版日期:2017-08-08 发布日期:2013-11-25
  • 通讯作者: 潘剑E-mail:jpan@hisunpharm.com

Method development of reversed-phase preparative liquid chromatography for insulin

PAN Jian, TAO Yunguo   

  1. Hisun Pharmaceutical(Hangzhou) Co. Ltd., Hangzhou 311404, China
  • Received:2017-04-13 Online:2017-08-08 Published:2013-11-25

摘要:

以胰岛素反相制备色谱方法的开发和优化为目标,通过考察色谱保留参数、峰展宽及样品流出曲线的浓度分布等色谱参数,对流动相梯度、色谱填料、载样量等色谱条件进行了优化,并建立了胰岛素制备色谱峰参数的描述方法。结果表明,所建立的方法可快速筛选出最适于胰岛素分离的色谱条件(包括流动相梯度及分离填料),即流动相中的强洗脱溶剂(有机相)需采取缓梯度窄区间的变化条件,筛选出的分离填料需具备峰向两侧展宽且展宽程度较小、样品最高浓度居中分布的特点。将方法用于实际胰岛素粗品的纯化制备,获得了杂质去除效果好、胰岛素纯度高的产品。该法为胰岛素反相色谱纯化制备方法的快速建立提供了指导,具有较强的实用价值,同时为发展大分子化合物的制备色谱方法提供了参考。

关键词: 反相制备色谱, 峰展宽, 浓度分布, 色谱参数, 胰岛素

Abstract:

The development and optimization of reversed-phase preparative liquid chromatography method for insulin were performed. The chromatographic retention, sample loading and peak broadening were investigated. The mobile phase gradient conditions and stationary phases were optimized. The parameters of the method contained the peak broadening levels under different amounts of sample loading and the concentration distribution of the target compound in the elution curves. The parameters of peak broadening levels were defined and expressed as a matrix, which consisted of sample loading, the forward broadening and the backward broadening levels. The most suitable chromatographic system (including stationary phases and mobile phase conditions) was selected. A gradient program with slow change of the strong elution solvent was used. The most suitable stationary phase should exhibit the narrower peak broadening and the peaks were best to broaden to both sides comparing to that under the analytical conditions. Besides, the concentration distribution of the target compound should be focused on the middle of the elution. The guide principles were validation by purification of crude insulin products. The preparative chromatographic system constructed through this method can remove impurities effectively. The method has good practical value. It can provide reference for the development of preparative chromatographic methods of other macromolecular compounds.

Key words: chromatographic parameters, concentration distribution, insulin, peak broadening, reversed-phase preparative liquid chromatography

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