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一种平面膜片钳芯片多次复用的新技术。

A new technique for multiple re-use of planar patch clamp chips.

机构信息

Department of Medicine, David Geffen School of Medicine at UCLA, Los Angeles, CA 90095, United States.

出版信息

J Neurosci Methods. 2012 Jul 15;208(2):205-10. doi: 10.1016/j.jneumeth.2012.05.002. Epub 2012 May 16.

Abstract

The patch clamp technique is widely used for recording the activity of ion channels in single cells and lipid bilayers. Most platforms utilize borosilicate glass configured as a pipette, however more recently planar patch clamp chips have been developed that require less technical expertise. Planar patch clamp chips in systems like the Nanion Port-a-Patch are useful in that they allow more rapid throughput in drug screening studies. This technique also has the ability to perform rapid solution changes from the intracellular side. A current drawback with the planar patch clamp chips is the need to utilize a separate chip for each experiment. This increases the cost of each experiment and is due to the fact that the ∼1μm aperture used for cell attachment is thought to retain cellular debris thereby preventing subsequent cell attachment and formation of GΩ seals. In the present study we have for the first time solved the technical problem of developing a simple protocol for re-use of Nanion planar patch clamp chips. The re-use methodology is demonstrated in whole cell patch clamp studies of HEK-293 cells expressing the electrogenic sodium bicarbonate cotransporter NBCe1-A in protocols involving external and internal solution changes, and CHO-K1 cells with incorporated gramicidin channels.

摘要

膜片钳技术广泛应用于记录单细胞和脂质双层中离子通道的活动。大多数平台都使用硼硅酸盐玻璃配置成一个吸管,但最近已经开发出了更简单的平面膜片钳芯片,这些芯片需要的技术专业知识较少。平面膜片钳芯片在 Nanion Port-a-Patch 等系统中非常有用,因为它们可以在药物筛选研究中提高更快的通量。这种技术还能够从细胞内快速更换溶液。平面膜片钳芯片的一个当前缺点是需要为每个实验使用单独的芯片。这增加了每个实验的成本,这是因为用于细胞附着的约 1μm 孔径被认为会保留细胞碎片,从而阻止后续的细胞附着和形成 GΩ 密封。在本研究中,我们首次解决了为 Nanion 平面膜片钳芯片开发简单重复使用协议的技术问题。重复使用方法在涉及外部和内部溶液变化的表达电活性碳酸氢盐共转运蛋白 NBCe1-A 的 HEK-293 细胞的全细胞膜片钳研究以及包含整合的短杆菌肽通道的 CHO-K1 细胞中得到了验证。

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