Huang Yunping, Fu Jinmei, Ludwig Richard, Tao Li, Bongers Jacob, Ma Li, Yao Ming, Zhu Mingshe, Das Tapan, Russell Reb
Biologics Development, Global Product Development and Supply, Bristol-Myers Squibb Co., Pennington, NJ 08534, United States.
Biologics Development, Global Product Development and Supply, Bristol-Myers Squibb Co., Pennington, NJ 08534, United States.
J Chromatogr B Analyt Technol Biomed Life Sci. 2017 Nov 15;1068-1069:193-200. doi: 10.1016/j.jchromb.2017.08.046. Epub 2017 Oct 12.
Sequence variants of a monoclonal antibody resulting from incomplete processing of signal peptide were identified and characterized using multiple mass spectrometry platforms and reverse phase chromatography. Detection and quantification of these variants by three LC/MS platforms were assessed. Quantification was also performed by mass spectrometric analysis of the subunits of the antibody generated by reduction and IdeS proteolysis. Peptide mapping with LC/MS/MS detection was used to quantify and confirm the identities of signal peptide sequence variants. Although quantification of the signal peptide variants thru mass spectrometry approaches is system dependent, our data revealed the results are close to the values determined by chromatographic separation with UV detection. Each of the methods have proven effective in demonstrating the consistency of signal peptide variants levels across the manufacture history of the antibody.
利用多个质谱平台和反相色谱法对因信号肽加工不完全而产生的单克隆抗体序列变体进行了鉴定和表征。评估了通过三种液相色谱/质谱平台对这些变体的检测和定量。还通过对还原和IdeS蛋白酶解产生的抗体亚基进行质谱分析来进行定量。使用液相色谱/串联质谱检测的肽图谱来定量和确认信号肽序列变体的身份。尽管通过质谱方法对信号肽变体进行定量依赖于系统,但我们的数据表明结果与通过紫外检测的色谱分离所确定的值接近。每种方法都已证明可有效证明抗体生产历史中信号肽变体水平的一致性。