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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Characterization and quantification of histidine degradation in therapeutic protein formulations by size exclusion-hydrophilic interaction two dimensional-liquid chromatography with stable-isotope labeling mass spectrometry
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Characterization and quantification of histidine degradation in therapeutic protein formulations by size exclusion-hydrophilic interaction two dimensional-liquid chromatography with stable-isotope labeling mass spectrometry

机译:通过尺寸排阻-亲水相互作用二维液相色谱-稳定同位素标记质谱法表征和定量治疗性蛋白质制剂中组氨酸的降解

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Two dimensional liquid chromatography (2D-LC) coupling size exclusion (SEC) and hydrophilic interaction chromatography (HILIC) is demonstrated as a useful tool to study polar excipients, such as histidine and its degradant, in protein formulation samples. The SEC-HILIC setup successfully removed interferences from complex sample matrices and enabled accurate mass measurement of the histidine degradation product, which was then determined to be trans-urocanic acid. Because the SEC effluent is a strong solvent for the second dimension HILIC, experimental parameters needed to be carefully chosen, i.e., small transferring loop, fast gradient at high flow rates for the second dimension gradient, in order to mitigate the solvent mismatch and to ensure good peak shapes for HILIC separations. In addition, the generation of trans-urocanic acid was quantified by single heart-cutting SEC-HILIC 2D-LC combined with stable-isotope labeling mass spectrometry. Compared with existing 2D quantification methods, the proposed approach is fast, insensitive to solvent mismatch between dimensions, and tolerant of small retention time shifts in the first dimension. Finally, the first dimension diode array detector was found to be a potential degradation source for photolabile analytes such as trans-urocanic acid. (C) 2015 Elsevier B.V. All rights reserved.
机译:二维液相色谱(2D-LC)偶联尺寸排阻(SEC)和亲水相互作用色谱(HILIC)被证明是研究蛋白质制剂样品中极性赋形剂(例如组氨酸及其降解物)的有用工具。 SEC-HILIC设置成功去除了复杂样品基质中的干扰,并能够对组氨酸降解产物进行精确的质量测量,然后确定该产物为反式尿烷酸。由于SEC流出物是第二维HILIC的强溶剂,因此需要谨慎选择实验参数,例如,较小的传输环路,第二维梯度的高流速下的快速梯度,以减轻溶剂不匹配并确保HILIC分离的良好峰形。另外,通过单心切割SEC-HILIC 2D-LC结合稳定同位素标记质谱法对反式尿烷酸的产生进行了定量。与现有的2D定量方法相比,该方法速度快,对尺寸之间的溶剂不匹配不敏感,并且可以承受一维的较小保留时间偏移。最后,发现一维二极管阵列检测器是光不稳定分析物(如反式尿烷酸)的潜在降解源。 (C)2015 Elsevier B.V.保留所有权利。

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