Thermo Fisher Scientific, Reinach4153, Switzerland.
Thermo Fisher Scientific, Sunnyvale, California94085, United States.
Anal Chem. 2022 Nov 29;94(47):16369-16375. doi: 10.1021/acs.analchem.2c03531. Epub 2022 Nov 16.
Characterization and quality control of biotherapeutic proteins commonly require the application of several orthogonal separation techniques in order to establish product identity and purity. Many of the techniques used rely on a buffered aqueous mobile phase system to maintain the native conformation of the protein and its variants. Optimal pH, buffer substance(s), and chromatography methods vary with each protein of interest and result in tedious method development for each new drug product. Linear controlled pH gradient systems from pH 5.6 to pH 10.2 has been shown to provide a global method for the separation of charge variants of monoclonal antibodies. This can be realized using two balanced zwitterionic buffer blends. The pH linearity of the resulting system, with a cation ion exchange column in place, can generate any pH value in this accessible pH range. This study expands the scope of this buffer system and demonstrates its application in conjunction with a quaternary HPLC pump for several analytical techniques: the pH optimization of salt gradient-based anion and cation exchange during method development, as well as performing pH gradient elution. In addition, the same universal buffers are used for hydrophobic interaction and size exclusion chromatography. This eluent system omits the need to prepare different buffers for each method and flushing of the HPLC system between method changes. The implementation of this concept is further demonstrated to allow an automated method scouting approach and selection of different methods that requires minimal manual intervention.
生物治疗蛋白的特性和质量控制通常需要应用几种正交分离技术,以确定产品的身份和纯度。许多使用的技术依赖于缓冲水性流动相系统来维持蛋白质及其变体的天然构象。最佳 pH 值、缓冲物质和色谱方法因每种感兴趣的蛋白质而异,导致每个新药物产品的方法开发都很繁琐。已显示 pH 5.6 至 pH 10.2 的线性控 pH 梯度系统可为单克隆抗体的电荷变体分离提供一种通用方法。这可以使用两种平衡的两性离子缓冲混合物来实现。在阳离子离子交换柱存在的情况下,该系统的 pH 线性可以在这个可访问的 pH 范围内生成任何 pH 值。本研究扩展了该缓冲系统的范围,并展示了其与四元 HPLC 泵一起在几种分析技术中的应用:在方法开发过程中优化基于盐梯度的阴离子和阳离子交换的 pH 值,以及进行 pH 梯度洗脱。此外,相同的通用缓冲液用于疏水性相互作用和大小排阻色谱。该洗脱液系统无需为每种方法准备不同的缓冲液,也无需在方法更改之间冲洗 HPLC 系统。该概念的实施进一步证明可以允许自动化方法探索方法和选择需要最小手动干预的不同方法。