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一种允许对膜片钳微电极进行内部灌注的新型固定装置。

A novel holder allowing internal perfusion of patch-clamp pipettes.

作者信息

Lapointe J Y, Szabo G

机构信息

Department of Physiology and Biophysics, University of Texas, Galveston 77550.

出版信息

Pflugers Arch. 1987 Sep;410(1-2):212-6. doi: 10.1007/BF00581918.

Abstract

We describe a simple pipette holder which allows, within a single experiment, multiple exchanges of the solution inside "gigaseal" glass pipettes commonly used for electrical studies of single cells or isolated membrane patches. The design minimizes electrostatic and mechanical perturbations associated with perfusion by integrating into the holder a reservoir which is connected to a perfusion pipette fabricated from flexible, resilient quartz tubing. The tip of the perfusion pipette can be pulled to any diameter and positioned precisely within the main patch-pipette by sliding the reservoir along a guide in the holder. An open reservoir for suction driven solution exchange, and a closed reservoir for pressure driven solution exchange were developed. For the open system, the speed of solution exchange was studied as a function of the tip diameter of the perfusion pipette (approximately 22 s for a 40 micron tip diameter). Both systems were characterized using atrial myocytes (a) by examining the effects of intracellular applications of cAMP or of the catalytic subunit of protein kinase A on calcium currents in the whole cell recording mode and (b) by studying the effects of local applications of acetylcholine (ACh) on single channel currents in the isolated membrane patch mode.

摘要

我们描述了一种简单的移液管支架,在单个实验中,它能实现“千兆封接”玻璃移液管内溶液的多次更换,这种移液管常用于单细胞或分离膜片的电学研究。该设计通过在支架中集成一个储液器,将与灌注相关的静电和机械干扰降至最低,该储液器连接到由柔性、弹性石英管制成的灌注移液管。通过沿着支架中的导轨滑动储液器,灌注移液管的尖端可以拉成任何直径,并精确地定位在主膜片移液管内。开发了一个用于抽吸驱动溶液交换的开放式储液器和一个用于压力驱动溶液交换的封闭式储液器。对于开放式系统,研究了溶液交换速度与灌注移液管尖端直径的关系(尖端直径为40微米时约为22秒)。两种系统均使用心房肌细胞进行表征:(a) 在全细胞记录模式下,通过检查细胞内应用cAMP或蛋白激酶A催化亚基对钙电流的影响;(b) 在分离膜片模式下,通过研究局部应用乙酰胆碱(ACh)对单通道电流的影响。

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