Pharma Technical Development Europe (Biologics) Analytics, Basel, Switzerland.
Department of Chemistry, University of Basel, Basel, Switzerland.
Electrophoresis. 2021 Jun;42(11):1209-1216. doi: 10.1002/elps.202000355. Epub 2021 Mar 10.
Oxidative damage of biopharmaceuticals during manufacturing and storage is a key concern throughout pharmaceutical development. However, few simple and robust analytical methods are available for the determination of oxidation sites. Here, the potential of affinity capillary electrophoresis (ACE) in the separation of proteins with oxidized methionine (Met) residues is shown. Silver(I) and gold(I) ions have the attribute to selectively form complexes with thioethers over sulfoxides. The addition of these ions to the BGE leads to a selective complexation of Met residues and, thus, to a change of charge allowing separation of species according to the different oxidation states of Met. The mechanisms of these interactions are discussed and binding constants for peptides containing Met with silver(I) are calculated. Additionally, the proposed method can be used as an indicator of oxidative stress in large proteins. The presented technique is easily accessible, economical, and has rapid analysis times, adding new approaches to the analytical toolbox of Met sulfoxide detection.
在制药开发过程中,生物制药在制造和储存过程中的氧化损伤是一个关键问题。然而,很少有简单而强大的分析方法可用于确定氧化部位。本文展示了亲和毛细管电泳(ACE)在分离具有氧化甲硫氨酸(Met)残基的蛋白质方面的潜力。银(I)和金(I)离子具有选择性地与硫醚而不是亚砜形成配合物的特性。将这些离子添加到 BGE 中会导致 Met 残基的选择性络合,从而改变电荷,从而根据 Met 的不同氧化态分离物种。讨论了这些相互作用的机制,并计算了含有 Met 的肽与银(I)的结合常数。此外,该方法可作为大蛋白中氧化应激的指示剂。所提出的技术易于访问,经济实惠,并且具有快速的分析时间,为 Met 亚砜检测的分析工具包增加了新方法。