首页> 美国卫生研究院文献>Journal of Visualized Experiments : JoVE >An HS-MRM Assay for the Quantification of Host-cell Proteins in Protein Biopharmaceuticals by Liquid Chromatography Ion Mobility QTOF Mass Spectrometry
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An HS-MRM Assay for the Quantification of Host-cell Proteins in Protein Biopharmaceuticals by Liquid Chromatography Ion Mobility QTOF Mass Spectrometry

机译:通过液相色谱离子淌度QTOF质谱定量蛋白质生物制药中宿主细胞蛋白质的HS-MRM分析

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摘要

The analysis of low-level (1-100 ppm) protein impurities (e.g., host-cell proteins (HCPs)) in protein biotherapeutics is a challenging assay requiring high sensitivity and a wide dynamic range. Mass spectrometry-based quantification assays for proteins typically involve protein digestion followed by the selective reaction monitoring/multiple reaction monitoring (SRM/MRM) quantification of peptides using a low-resolution (Rs ~1,000) tandem quadrupole mass spectrometer. One of the limitations of this approach is the interference phenomenon observed when the peptide of interest has the "same" precursor and fragment mass (in terms of m/z values) as other co-eluting peptides present in the sample (within a 1-Da window). To avoid this phenomenon, we propose an alternative mass spectrometric approach, a high selectivity (HS) MRM assay that combines the ion mobility separation of peptide precursors with the high-resolution (Rs ~30,000) MS detection of peptide fragments. We explored the capabilities of this approach to quantify low-abundance peptide standards spiked in a monoclonal antibody (mAb) digest and demonstrated that it has the sensitivity and dynamic range (at least 3 orders of magnitude) typically achieved in HCP analysis. All six peptide standards were detected at concentrations as low as 0.1 nM (1 femtomole loaded on a 2.1-mm ID chromatographic column) in the presence of a high-abundance peptide background (2 µg of a mAb digest loaded on-column). When considering the MW of rabbit phosphorylase (97.2 kDa), from which the spiked peptides were derived, the LOQ of this assay is lower than 50 ppm. Relative standard deviations (RSD) of peak areas (n = 4 replicates) were less than 15% across the entire concentration range investigated (0.1-100 nM or 1-1,000 ppm) in this study.
机译:蛋白质生物治疗中低水平(1-100 ppm)蛋白质杂质(例如宿主细胞蛋白质(HCP))的分析是一项具有挑战性的测定法,需要高灵敏度和宽动态范围。基于质谱的蛋白质定量分析通常涉及蛋白质消化,然后使用低分辨率(约1000卢比)串联四极杆质谱仪对肽段进行选择性反应监测/多反应监测(SRM / MRM)定量。这种方法的局限性之一是,当目标肽与样品中存在的其他共洗脱肽(在1-内)具有“相同”的前体和片段质量(以m / z值表示)时,会观察到干扰现象。大窗口)。为避免这种现象,我们提出了另一种质谱方法,即将肽前体的离子淌度分离与肽片段的高分辨率(Rs〜30,000)MS检测结合起来的高选择性(HS)MRM分析。我们探索了这种方法对定量掺入单克隆抗体(mAb)消化物中的低丰度肽标准品的能力,并证明了其具有HCP分析通常达到的灵敏度和动态范围(至少3个数量级)。在存在高丰度多肽背景(2 µg柱上mAb消化物)的情况下,检测到所有六种肽标准品的浓度低至0.1 nM(1个飞摩尔装在2.1 mm ID色谱柱上)。当考虑衍生出加标肽的兔磷酸化酶的分子量(97.2 kDa)时,该测定的最低定量限低于50 ppm。在本研究中,在整个研究浓度范围(0.1-100 nM或1-1,000 ppm)内,峰面积(n = 4个重复)的相对标准偏差(RSD)小于15%。

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