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用于毛细管电泳中蛋白质分离的高效且重现性好的聚电解质多层涂层的关键参数。

Critical parameters for highly efficient and reproducible polyelectrolyte multilayer coatings for protein separation by capillary electrophoresis.

机构信息

IBMM, University of Montpellier, CNRS, ENSCM, Montpellier, France.

Faculty of Chemistry, Aalen University, Aalen, Germany.

出版信息

J Chromatogr A. 2023 Apr 26;1695:463912. doi: 10.1016/j.chroma.2023.463912. Epub 2023 Mar 6.

DOI:10.1016/j.chroma.2023.463912
PMID:36972664
Abstract

Since the introduction of polyelectrolyte multilayers to protein separation in capillary electrophoresis (CE), some progress has been made to improve separation efficiency by varying different parameters, such as buffer ionic strength and pH, polyelectrolyte nature and number of deposited layers. However, CE is often overlooked as it lacks robustness compared to other separation techniques. In this work, critical parameters for the construction of efficient and reproducible Successive multiple ionic-polymer layers (SMIL) coatings were investigated, focusing on experimental conditions, such as vial preparation and sample conservation which were shown to have a significant impact on separation performances. In addition to repeatability, intra- and inter-capillary precision were assessed, demonstrating the improved capability of poly(diallyldimethylammonium chloride) / poly(sodium styrene sulfonate) (PDADMAC / PSS) coated capillaries to separate model proteins in a 2 M acetic acid background electrolyte when all the correct precautions are put in place (with run to run%RSD(t) < 1.8%, day to day%RSD(t) < 3.2% and cap to cap%RSD(t) < 4.6%). The approach recently introduced to calculate retention factors was used to quantify residual protein adsorption onto the capillary wall and to assess capillary coating performances. 5-layer PDADAMAC / PSS coatings led to average retention factors for the five model proteins of ∼4×10. These values suggest a relatively low residual protein adsorption leading to reasonably flat plate height vs linear velocity curves, obtained by performing electrophoretic separations at different electrical voltages (-10 to -25 kV).

摘要

自从聚电解质多层膜被引入毛细管电泳(CE)中的蛋白质分离以来,通过改变不同的参数(如缓冲液离子强度和 pH 值、聚电解质的性质和沉积的层数),已经取得了一些进展来提高分离效率。然而,CE 往往被忽视,因为它与其他分离技术相比缺乏稳健性。在这项工作中,研究了构建高效和可重复的连续多次离子聚合物层(SMIL)涂层的关键参数,重点关注实验条件,如小瓶准备和样品保存,这些条件对分离性能有显著影响。除了重复性之外,还评估了内和毛细管间的精密度,证明了在采取所有正确措施的情况下,聚(二烯丙基二甲基氯化铵)/聚(苯乙烯磺酸钠)(PDADMAC/PSS)涂层毛细管分离 2 M 乙酸背景电解质中模型蛋白质的能力得到了提高(运行间%RSD(t) < 1.8%,天间%RSD(t) < 3.2%,管间%RSD(t) < 4.6%)。最近引入的用于计算保留因子的方法用于量化蛋白质在毛细管壁上的残留吸附,并评估毛细管涂层的性能。5 层 PDADAMAC/PSS 涂层导致五个模型蛋白质的平均保留因子约为 4×10。这些值表明残留蛋白质吸附相对较低,导致相当平坦的板高与线性速度曲线,通过在不同的电压(-10 到-25 kV)下进行电泳分离来获得。

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