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Analysis of host-cell proteins in biotherapeutic proteins by comprehensive online two-dimensional liquid chromatography/mass spectrometry

机译:全面的在线二维液相色谱/质谱法分析生物治疗蛋白中的宿主细胞蛋白

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摘要

Assays for identification and quantification of host-cell proteins (HCPs) in biotherapeutic proteins over 5 orders of magnitude in concentration are presented. The HCP assays consist of two types: HCP identification using comprehensive online two-dimensional liquid chromatography coupled with high resolution mass spectrometry (2D-LC/MS), followed by high-throughput HCP quantification by liquid chromatography, multiple reaction monitoring (LC-MRM). The former is described as a “discovery” assay, the latter as a “monitoring” assay. Purified biotherapeutic proteins (e.g., monoclonal antibodies) were digested with trypsin after reduction and alkylation, and the digests were fractionated using reversed-phase (RP) chromatography at high pH (pH 10) by a step gradient in the first dimension, followed by a high-resolution separation at low pH (pH 2.5) in the second dimension. As peptides eluted from the second dimension, a quadrupole time-of-flight mass spectrometer was used to detect the peptides and their fragments simultaneously by alternating the collision cell energy between a low and an elevated energy (MSE methodology). The MSE data was used to identify and quantify the proteins in the mixture using a proven label-free quantification technique (“Hi3” method). The same data set was mined to subsequently develop target peptides and transitions for monitoring the concentration of selected HCPs on a triple quadrupole mass spectrometer in a high-throughput manner (20 min LC-MRM analysis). This analytical methodology was applied to the identification and quantification of low-abundance HCPs in six samples of PTG1, a recombinant chimeric anti-phosphotyrosine monoclonal antibody (mAb). Thirty three HCPs were identified in total from the PTG1 samples among which 21 HCP isoforms were selected for MRM monitoring. The absolute quantification of three selected HCPs was undertaken on two different LC-MRM platforms after spiking isotopically labeled peptides in the samples. Finally, the MRM quantitation results were compared with TOF-based quantification based on the Hi3 peptides, and the TOF and MRM data sets correlated reasonably well. The results show that the assays provide detailed valuable information to understand the relative contributions of purification schemes to the nature and concentrations of HCP impurities in biopharmaceutical samples, and the assays can be used as generic methods for HCP analysis in the biopharmaceutical industry.
机译:提出了鉴定和定量浓度超过5个数量级的生物治疗性蛋白质中宿主细胞蛋白质(HCP)的检测方法。 HCP分析包括两种类型:使用全面的在线二维液相色谱结合高分辨率质谱(2D-LC / MS)进行HCP鉴定,然后通过液相色谱进行高通量HCP定量,进行多反应监测(LC-MRM) )。前者被描述为“发现”测定,后者被描述为“监测”测定。还原和烷基化后,用胰蛋白酶消化纯化的生物治疗蛋白(例如,单克隆抗体),并使用反相(RP)色谱法在高pH(pH 10)下通过一维梯度梯度将消化物分级,然后进行在第二维中在低pH(pH 2.5)下进行高分辨率分离。当肽从第二维洗脱时,四极杆飞行时间质谱仪通过在低能和高能之间交替碰撞细胞能量来同时检测肽及其片段(MSE方法)。使用成熟的无标记定量技术(“ Hi3”方法),MSE数据用于鉴定和定量混合物中的蛋白质。开采了相同的数据集,以随后开发目标肽和过渡产物,从而以高通量方式(20分钟LC-MRM分析)在三重四极杆质谱仪上监测所选HCP的浓度。该分析方法应用于六种PTG1样品中的低丰度HCP的鉴定和定量,PTG1是一种重组嵌合抗磷酸酪氨酸单克隆抗体(mAb)。从PTG1样品中总共鉴定出33种HCP,其中选择了21种HCP亚型用于MRM监测。在样品中加标同位素标记的肽后,在两个不同的LC-MRM平台上对三个选定的HCP进行了绝对定量。最后,将MRM定量结果与基于Hi3肽的基于TOF的定量进行比较,并且TOF和MRM数据集相关性很好。结果表明,该测定法提供了详细的有价值的信息,以了解纯化方案对生物制药样品中HCP杂质的性质和浓度的相对贡献,并且该测定法可用作生物制药行业中HCP分析的通用方法。

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