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用于离子通道研究的平面玻璃基板中的微结构孔

Microstructured apertures in planar glass substrates for ion channel research.

作者信息

Fertig Niels, George Michael, Klau Michèle, Meyer Christine, Tilke Armin, Sobotta Constanze, Blick Robert H, Behrends Jan C

机构信息

Nanion Technologies GmbH, München, Germany.

出版信息

Recept Channels. 2003;9(1):29-40.

Abstract

We have developed planar glass chip devices for patch clamp recording. Glass has several key advantages as a substrate for planar patch clamp devices. It is a good dielectric, is well-known to interact strongly with cell membranes and is also a relatively in-expensive material. In addition, it is optically neutral. However, microstructuring processes for glass are less well established than those for silicon-based substrates. We have used ion-track etching techniques to produce micron-sized apertures into borosilicate and quartz-glass coverslips. These apertures, which can be easily produced in arrays, have been used for high resolution recording of single ion channels as well as for whole-cell current recordings from mammalian cell lines. An additional attractive application that is greatly facilitated by the combination of planar geometry with the optical neutrality of the substrate is single-molecule fluorescence recording with simultaneous single-channel measurements.

摘要

我们已开发出用于膜片钳记录的平面玻璃芯片装置。玻璃作为平面膜片钳装置的基底具有几个关键优势。它是一种良好的电介质,众所周知能与细胞膜强烈相互作用,且还是一种相对廉价的材料。此外,它在光学上是中性的。然而,玻璃的微结构化工艺不如基于硅的基底那样成熟。我们已使用离子径迹蚀刻技术在硼硅酸盐和石英玻璃盖玻片上制作微米级孔径。这些孔径易于制成阵列,已用于单离子通道的高分辨率记录以及来自哺乳动物细胞系的全细胞电流记录。平面几何结构与基底的光学中性相结合极大地促进了另一个有吸引力的应用,即同时进行单通道测量的单分子荧光记录。

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