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用于无细胞离子通道研究的可储存液滴界面脂质双层。

Storable droplet interface lipid bilayers for cell-free ion channel studies.

机构信息

Department of Biological Engineering, Inha University, Incheon, Korea.

出版信息

Bioprocess Biosyst Eng. 2012 Jan;35(1-2):241-6. doi: 10.1007/s00449-011-0602-3. Epub 2011 Sep 10.

Abstract

An artificially created lipid bilayer is an important platform in studying ion channels and engineered biosensor applications. However, a lipid bilayer created using conventional techniques is fragile and short-lived, and the measurement of ion channels requires expertise and laborious procedures, precluding practical applications. Here, we demonstrate a storable droplet lipid bilayer precursor frozen with ion channels, resulting in a droplet interface bilayer upon thawing. A small vial with an aqueous droplet in organic solution was flash frozen in -80 °C methanol immediately after an aqueous droplet was introduced into the organic solution and gravity draws the droplet down to the interface upon thawing. A lipid bilayer created along the interface using this method had giga-ohm resistance and typical specific capacitance values. The noise level of this system is favorably comparable to the conventional system. The subsequent incorporation of ion channels, alpha-hemolysin and gramicidin A, showed typical conductance values consistent with those in previous literatures. This novel system to create a lipid bilayer as a whole can be automated from its manufacture to use and indefinitely stored when frozen. As a result, ion channel measurements can be carried out in any place, increasing the accessibility of ion channel studies as well as a number of applications, such as biosensors, ion channel drug screening, and biophysical studies.

摘要

人工脂质双层是研究离子通道和工程生物传感器应用的重要平台。然而,使用传统技术创建的脂质双层很脆弱且寿命短,并且离子通道的测量需要专业知识和繁琐的程序,因此无法实际应用。在这里,我们展示了一种可储存的带有离子通道的冻存液滴脂质双层前体,解冻后会形成液滴界面双层。将含有水滴的小瓶在 -80°C 的甲醇中立即快速冷冻,在将水滴引入有机溶液后,水滴会因重力而沿界面向下移动。使用这种方法在界面上形成的脂质双层具有千兆欧姆的电阻和典型的比电容值。该系统的噪声水平与传统系统相当。随后加入离子通道、α-溶血素和短杆菌肽 A,其典型电导值与文献中的值一致。这种创建整体脂质双层的新型系统可以从制造到使用实现自动化,并在冷冻时无限期储存。因此,离子通道的测量可以在任何地方进行,增加了离子通道研究以及生物传感器、离子通道药物筛选和生物物理研究等许多应用的可及性。

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