Department of Pharma Technical Development, Genentech, Oceanside, CA 92056, USA.
J Chromatogr B Analyt Technol Biomed Life Sci. 2011 Apr 15;879(13-14):955-60. doi: 10.1016/j.jchromb.2011.03.006. Epub 2011 Mar 10.
Susceptibility of tryptophan (Trp) in a complementarity-determining region (CDR) to oxidation is a significant issue for recombinant monoclonal antibody (mAb) therapeutics due to the clinical efficacy and stability concerns. Here we present a case study using hydrophobic interaction chromatography (HIC) to separate an oxidized Trp containing population of an IgG1. The best separation was achieved using dual Dionex ProPac HIC-10 columns, and the oxidized Trp population was isolated as a separated pre-peak. Peptide map analysis revealed that the oxidized Trp is located in a heavy chain CDR. In addition, the HIC method was capable of monitoring the oxidation status of the CDR Trp, as the oxidation rate of the CDR Trp measured by HIC directly correlated with the results of the peptide maps. The same method conditions were also capable of separating oxidized methionine (Met) and isomerization/deamidation products, which co-elute as another pre-peak at a different retention time from the oxidized Trp species. These observations indicate that the HIC procedure can be utilized to monitor the oxidative status of the CDR Trp in the IgG1.
色氨酸(Trp)在互补决定区(CDR)中易被氧化,这是重组单克隆抗体(mAb)治疗药物的一个重大问题,因为这涉及到临床疗效和稳定性的担忧。在这里,我们通过疏水作用层析(HIC)来分离 IgG1 中含氧化 Trp 的部分,提供了一个案例研究。使用双 Dionex ProPac HIC-10 柱可实现最佳分离,氧化 Trp 部分作为分离的前峰被分离出来。肽图分析表明,氧化 Trp 位于重链 CDR 中。此外,HIC 方法能够监测 CDR Trp 的氧化状态,因为通过 HIC 测量的 CDR Trp 的氧化速率与肽图的结果直接相关。相同的方法条件也能够分离氧化的蛋氨酸(Met)和异构化/脱酰胺产物,它们与氧化的 Trp 物质一起在不同的保留时间从另一个前峰洗脱。这些观察结果表明,HIC 程序可用于监测 IgG1 中 CDR Trp 的氧化状态。