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Protein analysis by membrane preconcentration capillary electrophoresis: systematic evaluation of parameters affecting preconcentration and separation

机译:通过膜预浓缩毛细管电泳进行蛋白质分析:系统评估影响预浓缩和分离的参数

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Fast and efficient analysis of proteins in physiological fluids is of great interest to researchers and clinicians alike. Capillary electrophoresis (CE) has proven to be a potentially valuable tool for the separation of proteins in specimens. However, a generally acknowledged drawback of this technique is the limited sample volumes which can be loaded onto the CE capillary which results in a poor concentration limit of detection. In addition, matrix components in samples may also interfere with separation and detection of analytes. Membrane preconcentration-CE (mPC-CE) has proved to be effective in overcoming these problems. In this report, we describe the systematic evaluation of parameters affecting on-line preconcentration/clean-up and separation of protein mixtures by mPC-CE. Method development was carried out with a standard mixture of proteins (lysozyme, myoglobin, carbonic anhydrase, and human serum albumin). First, using MALDI-TOF-MS, membrane materials with cation-exchange (R-SO3H) or hydrophobic (C-2, C-8, C-18, SDB) characteristics were evaluated for their potential to retain proteins in mPC cartridges. Hydrophobic membranes were found most suitable for this application. Next, all mPC-CE analysis of protein samples were performed in polybrene coated capillaries and parameters affecting sample loading, washing and elution, such as the composition and volume of the elution solvent were investigated. Furthermore, to achieve optimal mPC-CE performance for the separation of protein mixtures parameters affecting postelution focusing and electrophoresis, including the composition of the background electrolyte and a trailing stacking buffer were varied. Optimal conditions for mPC-CE analysis of proteins using a C-2 impregnated membrane preconcentration (mPC) cartridge were achieved with a background electrolyte of 5% acetic acid and 2 mM ammonium acetate, 60 nl of 80% acetonitrile in H2O as an elution solvent, and 60 nl of 0.5% ammonium hydroxide as a trailing stacking buffer. The developed method was used successfully to separate proteins in aqueous humor, which contains numerous proteins in a complex matrix of salts. (C) 1998 Elsevier Science B.V. All rights reserved. [References: 48]
机译:研究人员和临床医生都对快速有效地分析生理液中的蛋白质感兴趣。毛细管电泳(CE)已被证明是用于分离样品中蛋白质的潜在有价值的工具。但是,该技术的一个公认的缺点是可以加载到CE毛细管上的样本量有限,这导致检测浓度极限变差。另外,样品中的基质成分也可能干扰分析物的分离和检测。膜预浓缩CE(mPC-CE)已被证明可有效解决这些问题。在本报告中,我们描述了影响在线预浓缩/净化和通过mPC-CE分离蛋白混合物的参数的系统评估。用标准的蛋白质混合物(溶菌酶,肌红蛋白,碳酸酐酶和人血清白蛋白)进行方法开发。首先,使用MALDI-TOF-MS对具有阳离子交换(R-SO3H)或疏水性(C-2,C-8,C-18,SDB)特性的膜材料在mPC柱中保留蛋白质的潜力进行了评估。发现疏水膜最适合该应用。接下来,所有蛋白质样品的mPC-CE分析都在覆盖有聚乙烯的毛细管中进行,并研究了影响样品上样,洗涤和洗脱的参数,例如洗脱溶剂的组成和体积。此外,要获得最佳的mPC-CE性能以分离蛋白质混合物,可以改变影响洗脱后聚焦和电泳的参数,包括背景电解质的成分和尾随的堆积缓冲液。使用5%乙酸和2 mM乙酸铵的背景电解质,60 mL 80%乙腈的H2O水溶液作为洗脱液,使用C-2浸渍膜预浓缩(mPC)柱实现了mPC-CE分析蛋白质的最佳条件,以及60毫升的0.5%氢氧化铵作为尾随堆积缓冲液。所开发的方法已成功用于分离房水中的蛋白质,房水在复杂的盐基质中包含大量蛋白质。 (C)1998 Elsevier Science B.V.保留所有权利。 [参考:48]

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