...
首页> 外文期刊>Electrochimica Acta >Phospholipid monolayer coated microfabricated electrodes to model the interaction of molecules with biomembranes
【24h】

Phospholipid monolayer coated microfabricated electrodes to model the interaction of molecules with biomembranes

机译:磷脂单层涂覆的微制造电极可模拟分子与生物膜的相互作用

获取原文
获取原文并翻译 | 示例

摘要

The hanging mercury (Hg) drop electrode (HMDE) has a classical application as a tool to study adsorption and desorption processes of surface organic films due to its: (a) atomically smooth surface and, (b) hydrophobicity at its potential of zero charge. In this study we report on a replacement of the HMDE for studying supported organic layers in the form of platinum (Pt) working electrodes fabricated using lithography techniques on which a thin film of Hg is electrodeposited. These wafer-based Pt/Hg electrodes are characterised and compared to the HMDE using rapid cyclic voltammetry (RCV) and show similar capacitance-potential profiles while being far more mechanically stable and consuming considerably less Hg over their lifetime of several months. The electrodes have been used to support self-assembled phospholipid monolayers which are dynamic surface coatings with unique dielectric properties. The issue of surface contamination has been solved by regenerating the electrode surface prior to phospholipid coating by application of extreme cathodic potentials more negative than -2.6 V (vs. Ag/AgCl). The phospholipid coated electrodes presented in this paper mimic one half of a phospholipid bilayer and exhibit interactions with the biomembrane active drug molecules chlorpromazine, and quinidine. The magnitudes of these interactions have been assessed by recording changes in the capacitance-potential profiles in real time using RCV at 40 V s{sup}(-1) over potential ranges >1 V. A method for electrode coating with phospholipids with the electrodes fitted in a flow cell device has been developed. This has enabled sequential rapid cleaning/coating/interaction cycles for the purposes of drug screening and/or on-line monitoring for molecules of interest.
机译:悬挂式汞(Hg)滴电极(HMDE)作为研究表面有机膜的吸附和解吸过程的工具具有经典用途,因为它具有:(a)原子光滑的表面,以及(b)零电荷电位下的疏水性。在这项研究中,我们报告了用HMDE替代品来研究采用光刻技术制造的铂(Pt)工作电极形式的支撑有机层的技术,该技术在其上沉积了Hg薄膜。这些基于晶片的Pt / Hg电极的特性和使用快速循环伏安法(RCV)的HMDE进行了比较,并显示出相似的电容-电位曲线,同时机械稳定性更高,并且在其几个月的使用寿命中消耗的汞明显更少。电极已用于支撑自组装磷脂单层,该单层是具有独特介电性能的动态表面涂层。表面污染的问题已通过在磷脂涂层之前通过施加比-2.6 V(vs. Ag / AgCl)负的极端阴极电势再生电极表面来解决。本文介绍的磷脂涂层电极模拟了磷脂双层的一半,并与生物膜活性药物分子氯丙嗪和奎尼丁发生相互作用。通过使用RCV在40 V s {sup}(-1)上在大于1 V的电位范围内实时记录电容-电位分布的变化,可以评估这些相互作用的幅度。一种用电极涂覆磷脂的电极的方法已开发出安装在流通池设备中的设备。为了药物筛选和/或在线监测目标分子的目的,这使得能够进行连续的快速清洁/涂覆/相互作用循环。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号