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用于通过毛细管电泳和在线电喷雾电离质谱法分析尿液和重组人促红细胞生成素的离子烯动态涂层毛细管。

Ionene-dynamically coated capillary for analysis of urinary and recombinant human erythropoietin by capillary electrophoresis and online electrospray ionization mass spectrometry.

作者信息

Yu Bing, Cong Hailin, Liu Huwei, Li Yuanzong, Liu Feng

机构信息

The Key Laboratory of Bioorganic Chemistry and Molecular Engineering of Ministry of Education, College of Chemistry and Molecular Engineering, Peking University, Beijing, China.

出版信息

J Sep Sci. 2005 Nov;28(17):2390-400. doi: 10.1002/jssc.200500156.

Abstract

In this article, a series of ionene polymers were synthesized and used to coat fused-silica capillaries for the separation of recombinant and urinary human erythropoietin (rhEPO and uEPO) standards by CE. The influence of the charge density of coatings on the separation of rhEPO and uEPO glycoforms was investigated. Then, we further studied the method for fast separation and detection of rhEPO and uEPO standards by CE-ESI-MS. The influence of several CE and MS operating parameters, such as the concentration of CE running buffer, applied external pressure, and the composition and flow rate of sheath liquid on CE-ESI-MS was studied. The results demonstrated that when the capillary was permanently coated with 6,6-ionene and the pH value of acetic acid-ammonium acetate running buffer was 4.80 and 5.50, respectively, a significantly reproducible separation was achieved for rhEPO and uEPO glycoforms. In the online CE-ESI-MS experiments, we not only achieved the online MS signal of uEPO, but also obtained baseline separation of three major rhEPO glycoforms successfully and reproducibly on the 6,6-ionene-coated capillaries. Furthermore, the standard mixture of rhEPO and uEPO was separated, and two incompletely resolved peaks that were identified to be rhEPO and uEPO by the unique MS "fingerprint" were obtained. Additionally, the molecular weight of rhEPO and uEPO were verified and compared to the results by MALDI-TOF-MS. It can be concluded that, in contrast to other indirect methods, the online CE-ESI-MS technique with the combination of the advantages of both CE and MS shows great potential for the separation and detection of rhEPO doping directly in competitive sports.

摘要

在本文中,合成了一系列紫罗碱聚合物,并将其用于涂覆熔融石英毛细管,以通过毛细管电泳(CE)分离重组人促红细胞生成素(rhEPO)和尿促红细胞生成素(uEPO)标准品。研究了涂层电荷密度对rhEPO和uEPO糖型分离的影响。然后,我们进一步研究了通过CE-ESI-MS快速分离和检测rhEPO和uEPO标准品的方法。研究了几个CE和MS操作参数,如CE运行缓冲液的浓度、施加的外部压力以及鞘液的组成和流速对CE-ESI-MS的影响。结果表明,当毛细管用6,6-紫罗碱永久涂覆,且乙酸-乙酸铵运行缓冲液的pH值分别为4.80和5.50时,rhEPO和uEPO糖型实现了显著可重复的分离。在在线CE-ESI-MS实验中,我们不仅获得了uEPO的在线MS信号,还在6,6-紫罗碱涂覆的毛细管上成功且可重复地实现了三种主要rhEPO糖型的基线分离。此外,分离了rhEPO和uEPO的标准混合物,并通过独特的MS“指纹”鉴定出两个未完全分离的峰分别为rhEPO和uEPO。此外,验证了rhEPO和uEPO的分子量,并与基质辅助激光解吸电离飞行时间质谱(MALDI-TOF-MS)的结果进行了比较。可以得出结论,与其他间接方法相比,结合了CE和MS优点的在线CE-ESI-MS技术在竞技体育中直接分离和检测rhEPO兴奋剂方面显示出巨大潜力。

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