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首页> 外文期刊>Chromatographia >Profiling the Photochemical-Induced Degradation of Rat Growth Hormone with Extreme Ultra-pressure Chromatography-Mass Spectrometry Utilizing Meter-Long Microcapillary Columns Packed with Sub-2-A mu m Particles
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Profiling the Photochemical-Induced Degradation of Rat Growth Hormone with Extreme Ultra-pressure Chromatography-Mass Spectrometry Utilizing Meter-Long Microcapillary Columns Packed with Sub-2-A mu m Particles

机译:利用含有仪表长的微粒子粒子的极端超压色谱 - 质谱,分析了大鼠生长激素的大鼠生长激素的降解的降解液体粒子

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摘要

In recent years, protein therapeutics have seen increasing use in the therapeutic arena. As with traditional small molecule drug substances, one is obligated to ensure purity and stability of the various dosage forms. With these higher molecular weight therapeutics, a common approach for analytical characterization is enzymatic digestion followed by gradient elution liquid chromatography with mass spectrometry detection to create a peptide map (bottom-up protein analysis). Due to the difficulty to separate mixtures frequently encountered, there is the need for advanced chromatographic systems featuring increased resolution and/or peak capacity that can be operated in the gradient elution format. Presently, we describe an extreme ultra-pressure liquid chromatography (XUPLC) system that has been implemented as an in-house add-on to a commercial ultra-pressure chromatography system. This add-on allows operation at the 38 Kpsi range, accommodates the use of capillary columns in excess of 1 m packed with sub-2-A mu m particles and can be operated in the gradient elution format. To evaluate the utility of this system, rat growth hormone was used as a model protein and was exposed to light (lambda 254 nm) to create a stress environment. When enzymatic digests of control and stressed protein were analyzed with the XUPLC system using MS detection, greater than 92% peptide coverage was achieved, including the identification some peptides where pre-oxidation of Met residues had occurred, as well as chemistry specifically related to the photolysis of protein disulfide linkages. When the same samples were analyzed by commercial UPLC and compared to the XUPLC results, the utility of the increased peak capacity available with the XUPLC was apparent as previously co-eluting peaks were now well resolved. In particular, one specific degradation route was identified where a pair of isobaric cis/trans diastereomerically related peptides were well resolved by XUPLC while they were unresolved by UPLC. Clearly the use of this system operating at a higher pressure regime with long capillary columns is and will be useful in continued investigations of protein stability, especially in cases where only subtle differences in the amino acid residues have occurred during degradation.
机译:近年来,蛋白质治疗剂已在治疗竞技场中看到越来越多。与传统的小分子药物一样,一个人有义务以确保各种剂型的纯度和稳定性。通过这些较高的分子量治疗方法,用于分析表征的常见方法是酶促消化,然后是具有质谱检测的梯度洗脱液相色谱,以产生肽图(自下而上蛋白质分析)。由于难以分离经常遇到的混合物,需要具有可以以梯度洗脱格式运行的增加的分辨率和/或峰值容量的先进的色谱系统。目前,我们描述了一种极端的超压液相色谱(XUPLC)系统,该系统已被实施为内部附加物到商业超压色谱系统。该附加组件允许在38 kpsi范围内操作,适用于毛细管柱超过1米的用子2-a mu m颗粒,可以以梯度洗脱格式操作。为了评估该系统的效用,将大鼠生长激素用作模型蛋白质,并暴露于光(Lambda 254nm)以产生应力环境。使用MS检测分析对照和应激蛋白质的酶促消化,达到大于92%的肽覆盖,包括鉴定出Met残留物预氧化的一些肽,以及与之相关的化学物质蛋白质二硫键的光解。当通过商业UPLC分析相同的样品并与XUPLC结果进行比较时,随着先前共同洗脱峰的XUPLC可获得的增加的峰值容量的效用表明现在很好地解决了。特别地,鉴定了一种特异性降解途径,其中通过Xuplc通过Xuplc溶解一对等因素CIS /反式非对肽相关的肽,而UPLC未得到解决。显然,在具有长毛细管柱的更高压力调节下运行该系统的使用是有用的蛋白质稳定性的持续研究,特别是在降解期间仅发生氨基酸残基的细微差异的情况下。

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