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基于耗散石英晶体微天平的二氧化硅表面阴离子磷脂涂层结构研究

Structure of anionic phospholipid coatings on silica by dissipative quartz crystal microbalance.

作者信息

Viitala Tapani, Hautala Jari T, Vuorinen Jorma, Wiedmer Susanne K

机构信息

KSV Instruments Ltd., Höyläämötie, Helsinki, Finland.

出版信息

Langmuir. 2007 Jan 16;23(2):609-18. doi: 10.1021/la060923t.

Abstract

The adsorption of anionic phospholipids on silica was investigated by the dissipative quartz crystal microbalance (QCM) technique. Liposomes composed of 1 mM 80:20 mol % of 1-palmitoyl-2-oleyl-sn-glycero-3-phosphatidylcholine (POPC)/phosphatidic acid, POPC/phosphatidylglycerol, or POPC/phosphatidylserine in N-(2-hydroxyethyl)piperazine-N'-(2-ethanesulfonic acid) buffer at pH 7.4 (with or without 3 mM of CaCl2) were examined. We have previously demonstrated that similar phospholipid coatings can be used in capillary electrochromatography as a stationary phase for the separation of analytes. In this work, we focus on the formation of the coatings and on the type of lipid structure formed on silica. The QCM investigation comprised qualitative results based on changes in frequency and resistance, and quantitative modeling of the obtained results. The latter was performed using the dissipative QCM, which measures the quartz crystal impedance, combined with equivalent circuit analysis. A previously developed coating and cleaning procedure for phospholipid-coated fused silica capillaries was adopted in this study, and the same silica-coated crystal was used throughout the QCM study. We will demonstrate in this work that the type of lipid structure formed on silica, that is, a rather rigid supported lipid bilayer or a viscoelastic supported vesicle layer (SVL), is highly dependent on the lipid and solvent composition. We also show for the first time that the modeling of the dissipative QCM data can be used to extract a more quantitative picture of an adsorbed SVL, because, so far, published studies have merely used the QCM data in a qualitative sense.

摘要

采用耗散石英晶体微天平(QCM)技术研究了阴离子磷脂在二氧化硅上的吸附情况。检测了由1 mM、摩尔比为80:20的1-棕榈酰-2-油酰-sn-甘油-3-磷脂酰胆碱(POPC)/磷脂酸、POPC/磷脂酰甘油或POPC/磷脂酰丝氨酸在pH 7.4的N-(2-羟乙基)哌嗪-N'-(2-乙磺酸)缓冲液(含或不含3 mM氯化钙)中构成的脂质体。我们之前已证明,类似的磷脂涂层可用于毛细管电色谱,作为分离分析物的固定相。在本研究中,我们关注涂层的形成以及在二氧化硅上形成的脂质结构类型。QCM研究包括基于频率和电阻变化的定性结果,以及对所得结果的定量建模。后者使用耗散QCM进行,该仪器测量石英晶体阻抗,并结合等效电路分析。本研究采用了先前开发的磷脂包被熔融石英毛细管的涂层和清洗程序,并且在整个QCM研究中使用了相同的二氧化硅包被晶体。我们将在本研究中证明,在二氧化硅上形成的脂质结构类型,即相当刚性的支撑脂质双层或粘弹性支撑囊泡层(SVL),高度依赖于脂质和溶剂组成。我们还首次表明,耗散QCM数据的建模可用于提取吸附的SVL的更定量图像,因为到目前为止,已发表的研究仅从定性角度使用QCM数据。

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