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使用聚凝胺 - 聚(乙烯基磺酸盐)涂层毛细管进行高效且高度可重复的肽毛细管电泳 - 质谱分析。

Efficient and highly reproducible capillary electrophoresis-mass spectrometry of peptides using Polybrene-poly(vinyl sulfonate)-coated capillaries.

作者信息

Catai Jonatan R, Toraño Javier Sastre, de Jong Gerhardus J, Somsen Govert W

机构信息

Department of Biomedical Analysis, Utrecht University, The Netherlands.

出版信息

Electrophoresis. 2006 Jun;27(11):2091-9. doi: 10.1002/elps.200500915.

DOI:10.1002/elps.200500915
PMID:16736451
Abstract

The potential of capillaries noncovalently coated with a bilayer of oppositely charged polymers for the analysis of peptides by CE-MS was investigated. Bilayer coatings were produced by subsequently rinsing fused-silica capillaries with a solution of Polybrene (PB) and poly(vinyl sulfonate) (PVS). The PB-PVS coating showed to be fully compatible with MS detection causing no ionization suppression or background signals. The bilayer coating provided a considerable EOF at low pH, thereby facilitating the fast separation of peptides using a BGE of formic acid (pH 2.5). Under optimized CE-MS conditions, for enkephalin peptides high separation efficiencies were obtained with plate numbers in the range of 300,000-500,000. It is demonstrated that both the cancellation of the hydrodynamic capillary flow induced by the nebulizer gas and a sufficiently high-data acquisition rate are crucial for achieving these efficiencies. The overall performance of the CE-MS system using PB-PVS-coated capillaries was evaluated by the analysis of a tryptic digest of cytochrome c. The system provided an efficient separation of the peptide mixture, which could be effectively monitored by MS/MS detection allowing identification of at least 13 peptides within a time interval of 1.5 min. In addition, the PB-PVS coating proved to be very consistent yielding stable CE-MS patterns with highly favorable migration time reproducibilities (RSDs < 1% over a 3-day period).

摘要

研究了用带相反电荷的聚合物双层非共价包覆的毛细管用于毛细管电泳-质谱法分析肽的潜力。通过依次用聚凝胺(PB)和聚乙烯磺酸盐(PVS)溶液冲洗熔融石英毛细管来制备双层涂层。PB-PVS涂层与质谱检测完全兼容,不会引起电离抑制或背景信号。双层涂层在低pH值下提供了相当大的电渗流,从而有利于使用甲酸(pH 2.5)的缓冲液快速分离肽。在优化的毛细管电泳-质谱条件下,对于脑啡肽肽,获得了300,000-500,000范围内的塔板数的高分离效率。结果表明,雾化器气体引起的流体动力学毛细管流的消除和足够高的数据采集速率对于实现这些效率至关重要。通过分析细胞色素c的胰蛋白酶消化物来评估使用PB-PVS包覆毛细管的毛细管电泳-质谱系统的整体性能。该系统对肽混合物进行了有效分离,可通过串联质谱检测进行有效监测,从而在1.5分钟的时间间隔内鉴定出至少13种肽。此外,PB-PVS涂层非常稳定,产生稳定的毛细管电泳-质谱图谱,迁移时间重现性非常好(3天内相对标准偏差<1%)。

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