首页> 外文期刊>Journal of pharmaceutical sciences. >Profiling and Characterization of Sialylated N-glycans by 2D-HPLC (HIAX/PGC) with Online Orbitrap MS/MS and Offline MSn
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Profiling and Characterization of Sialylated N-glycans by 2D-HPLC (HIAX/PGC) with Online Orbitrap MS/MS and Offline MSn

机译:在线Orbitrap MS / MS和离线MSn通过2D-HPLC(HIAX / PGC)对唾液酸化的N聚糖进行分析和表征

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摘要

Glycosylation is a critical parameter used to evaluate protein quality and consistency. N-linked glycan profiling is fundamental to the support of biotherapeutic protein manufacturing from early stage process development through drug product commercialization. Sialylated glycans impact the serum half-life of receptor–Fc fusion proteins (RFPs), making their quality and consistency a concern during the production of fusion proteins. Here, we describe an analytical approach providing both quantitative profiling and in-depth mass spectrometry (MS)-based structural characterization of sialylated RFP N-glycans. Aiming to efficiently link routine comparability studies with detailed structural characterization, an integrated workflow was implemented employing fluorescence detection, online positive and negative ion tandem mass spectrometry (MS/MS), and offline static nanospray ionization–sequential mass spectrometry (NSI–MSn). For routine use, high-performance liquid chromatography profiling employs established fluorescence detection of 2-aminobenzoic acid derivatives (2AA) and hydrophilic interaction anion-exchange chromatography (HIAX) charge class separation. Further characterization of HIAX peak fractions is achieved by online (?) ion orbitrap MS/MS, offering the advantages of high mass accuracy and data-dependent MS/MS. As required, additional characterization uses porous graphitized carbon in the second chromatographic dimension to provide orthogonal (+) ion MS/MS spectra and buffer-free liquid chromatography peak eluants that are optimum for offline (+)/(?) NSI–MSn investigations to characterize low-abundance species and specific moieties including O-acetylation and sulfation.
机译:糖基化是用于评估蛋白质质量和一致性的关键参数。从早期工艺开发到药品商业化,N-连接的聚糖谱分析是支持生物治疗性蛋白质生产的基础。唾液酸化聚糖会影响受体-Fc融合蛋白(RFP)的血清半衰期,从而使其质量和一致性成为融合蛋白生产过程中的一个问题。在这里,我们描述了一种分析方法,提供了唾液酸化RFP N聚糖的定量分析和基于深度质谱(MS)的结构特征。为了有效地将常规可比性研究与详细的结构表征联系起来,采用荧光检测,在线正负离子串联质谱(MS / MS)和离线静态纳米喷雾电离-顺序质谱(NSI–MSn)实施了集成的工作流程。对于常规用途,高性能液相色谱分析采用已建立的2-氨基苯甲酸衍生物(2AA)荧光检测和亲水相互作用阴离子交换色谱(HIAX)电荷类别分离。 HIAX峰分数的进一步表征是通过在线(?)离子轨道自动质谱仪实现的,具有质量准确度高和数据相关的质谱仪的优点。根据需要,附加的表征使用第二维色谱中的多孔石墨化碳,可提供正交(+)离子MS / MS谱图和无缓冲液的液相色谱峰洗脱液,它们是离线(+)/(?)NSI–MSn研究的最佳选择表征低丰度物种和特定部分,包括O-乙酰化和硫酸化。

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