Fekete Szabolcs, Beck Alain, Veuthey Jean-Luc, Guillarme Davy
School of Pharmaceutical Sciences, University of Geneva, University of Lausanne, Boulevard d'Yvoy 20, 1211 Geneva 4, Switzerland.
Center of Immunology Pierre Fabre, 5 Avenue Napoléon III, BP 60497, 74160 Saint-Julien-en-Genevois, France(1).
J Pharm Biomed Anal. 2015 Sep 10;113:43-55. doi: 10.1016/j.jpba.2015.02.037. Epub 2015 Feb 26.
Ion-exchange chromatography (IEX) is a historical technique widely used for the detailed characterization of therapeutic proteins and can be considered as a reference and powerful technique for the qualitative and quantitative evaluation of charge heterogeneity. The goal of this review is to provide an overview of theoretical and practical aspects of modern IEX applied for the characterization of therapeutic proteins including monoclonal antibodies (Mabs) and antibody drug conjugates (ADCs). The section on method development describes how to select a suitable stationary phase chemistry and dimensions, the mobile phase conditions (pH, nature and concentration of salt), as well as the temperature and flow rate, considering proteins isoelectric point (pI). In addition, both salt-gradient and pH-gradient approaches were critically reviewed and benefits as well as limitations of these two strategies were provided. Finally, several applications, mostly from pharmaceutical industries, illustrate the potential of IEX for the characterization of charge variants of various types of biopharmaceutical products.
离子交换色谱法(IEX)是一种历史悠久的技术,广泛用于治疗性蛋白质的详细表征,可被视为电荷异质性定性和定量评估的参考且强大的技术。本综述的目的是概述现代IEX在治疗性蛋白质(包括单克隆抗体(Mabs)和抗体药物偶联物(ADCs))表征中的理论和实践方面。方法开发部分描述了如何根据蛋白质的等电点(pI)选择合适的固定相化学性质和尺寸、流动相条件(pH值、盐的性质和浓度)以及温度和流速。此外,对盐梯度和pH梯度方法进行了批判性综述,并给出了这两种策略的优点和局限性。最后,几个主要来自制药行业的应用实例说明了IEX在各种生物制药产品电荷变体表征方面的潜力。