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用于蛋白质分离的聚合磷脂双层毛细管涂层的制备实用考虑因素。

Practical considerations for preparing polymerized phospholipid bilayer capillary coatings for protein separations.

机构信息

Department of Chemistry, Washburn University, Topeka, KS 66621, USA.

出版信息

Anal Chim Acta. 2013 Apr 15;772:93-8. doi: 10.1016/j.aca.2013.02.023. Epub 2013 Feb 24.

Abstract

Phosphorylcholine (PC) based phospholipid bilayers have proven useful as capillary coating materials due to their inherent resistance to non-specific protein adsorption. The primary limitation of this important class of capillary coatings remains the limited long-term chemical and physical stability of the coatings. Recently, a method for increasing phospholipid coating stability in fused silica capillaries via utilization of polymerized, synthetic phospholipids was reported. Here, we expand upon these studies by investigating polymerized lipid bilayer capillary coatings with respect to separation performance including run-to-run, day-to-day and column-to-column reproducibility and long-term stability. In addition, the effects of pH and capillary inner diameter on polymerized phospholipid coated capillaries were investigated to identify optimized coating conditions. The coatings are stabilized for protein separations across a wide range of pH values (4.0-9.3), a unique property for capillary coating materials. Additionally, smaller inner diameter capillaries (≤50 μm) were found to yield marked enhancements in coating stability and reproducibility compared to wider bore capillaries, demonstrating the importance of capillary size for separations employing polymerized phospholipid coatings.

摘要

基于磷酸胆碱(PC)的磷脂双层已被证明是有用的毛细管涂层材料,因为它们具有固有抗非特异性蛋白质吸附的能力。这种重要的毛细管涂层的主要局限性仍然是涂层的化学和物理稳定性有限。最近,报道了一种通过利用聚合的合成磷脂来提高熔融石英毛细管中磷脂涂层稳定性的方法。在这里,我们通过研究聚合脂质双层毛细管涂层在分离性能方面的表现,包括运行间、日常间和柱间的重现性和长期稳定性,对这些研究进行了扩展。此外,还研究了 pH 值和毛细管内径对聚合磷脂涂层毛细管的影响,以确定优化的涂层条件。这些涂层在很宽的 pH 值范围内(4.0-9.3)稳定用于蛋白质分离,这是毛细管涂层材料的独特性质。此外,与较宽内径的毛细管相比,较小内径(≤50μm)的毛细管显示出涂层稳定性和重现性的显著提高,这表明对于采用聚合磷脂涂层的分离,毛细管尺寸非常重要。

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