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Low-Flow Sheathless Capillary Electrophoresis-Mass Spectrometry for Sensitive Glycoform Profiling of Intact Pharmaceutical Proteins

机译:低流量无鞘毛细管电泳-质谱法用于完整药物蛋白的敏感糖仿谱分析

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Capillary electrophoresis coupled to time-of-flight mass spectrometry (CE-TOF-MS) via a porous tip sheathless electrospray ionization (ESI) interface was studied for the characterization of pharmaceutical glycoproteins. To achieve optimal glycoform separation, background electrolytes of low pH were used in conjunction with a capillary with a neutral coating exhibiting near-zero electroosmotic flow. Crucial interfacing parameters, like ESI voltage and ESI tip-to-end plate distance, were optimized for very low flow rates (~5 nL/min) in order to attain maximum sensitivity and stable performance. Under optimal conditions, the sheathless CE-MS interface provided significantly increased ionization efficiencies for intact proteins and decreased ionization suppression leading to detection limits in the picomolar-range. Analysis of a sample of recombinant human interferon-β allowed the assignment of at least 18 glycoforms, plus a variety of deamidation, succinimide, and oxidation products, representing a considerable improvement over sheath-liquid CE-MS. The sheathless CE-MS system also proved highly suitable for the glycoprofiling of recombinant human erythropoietin, revealing 74 glycoforms in a 60-min run. In addition, oxidation and acetylation products were detected, overall resulting in assignment of more than 250 different isoforms. Semiquantitative glycoprofiles could be derived for both pharmaceutical proteins, with estimated glycoform concentrations analyzed ranging from 0.35 to 950 nM. These profiles may be very useful for quality control of biopharmaceuticals and their biosimilars.
机译:通过毛细管尖端无鞘电喷雾电离(ESI)接口对毛细管电泳与飞行时间质谱(CE-TOF-MS)进行了研究,以表征药物糖蛋白。为了实现最佳的糖形式分离,将低pH值的背景电解质与带有中性涂层的毛细管结合使用,该中性涂层具有接近零的电渗流。为了获得最大的灵敏度和稳定的性能,最关键的接口参数(如ESI电压和ESI端到端板距)已针对非常低的流速(〜5 nL / min)进行了优化。在最佳条件下,无鞘CE-MS接口可显着提高完整蛋白的电离效率,并降低电离抑制,从而导致检测限在皮摩尔范围内。对重组人干扰素-β样品的分析允许分配至少18种糖型,以及多种脱酰胺,琥珀酰亚胺和氧化产物,这比鞘液CE-MS有了显着改进。经证实,无鞘CE-MS系统非常适合重组人促红细胞生成素的糖谱分析,在60分钟的运行中即可显示74种糖型。此外,检测到氧化和乙酰化产物,总体导致分配了250多种不同的亚型。两种药物蛋白均可得到半定量糖谱,分析的估计糖形浓度范围为0.35至950 nM。这些概况对于生物药物及其生物仿制药的质量控制可能非常有用。

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