Patch-clamping of primary cardiac cells with micro-openings in polyimide films

被引:36
作者
Stett, A [1 ]
Bucher, V [1 ]
Burkhardt, C [1 ]
Weber, U [1 ]
Nisch, W [1 ]
机构
[1] NMI Nat & Med Sci Inst, Reutlingen, Germany
关键词
high-throughput screening; ion channel; electrophysiology; patch-clamping; loose patch; automation;
D O I
10.1007/BF02344895
中图分类号
TP39 [计算机的应用];
学科分类号
081203 ; 0835 ;
摘要
Patch-clamping is a powerful method for investigating the function and regulation of ionic channels. Currently, great efforts are being made to automate this method. As a step towards this goal, the feasibility of patch-clamping primary cells with a microscopic opening in a planar substrate was tested. Using standard microfabrication and ion beam technology, small-diameter openings (2 and 4 mum) were formed in polyimide films (thickness 6.5 mum). Single cells (sheep Purkinje heart cells, Chinese hamster ovary cells) in a suspension were positioned on top of the opening and sucked towards the opening to improve adhesion of the cell to the planar substrate, hence increasing the seal resistance. Voltage/current measurements yielded a median seal resistance of 1.3MOmega with 4 mum openings (n=24) and 26.0 MOmega with 2mum openings (n=75), respectively. With 2mum openings, successful loose-patch recordings of TTX-sensitive inward currents and action potentials in sheep Purkinje heart cells (n = 18) were made. In rare cases, gigaseals (n = 4) were also measured, and a whole-cell configuration (n=1) could be established. It was concluded that the simple planar patch approach is suitable for automated loose-patch recordings from cells in suspension but will hardly be suitable for high-throughput whole-cell patch-clamping with high-resistance seals.
引用
收藏
页码:233 / 240
页数:8
相关论文
共 33 条
[1]   In vitro 2-D networks of neurons characterized by processing the signals recorded with a planar microtransducer array [J].
Bove, M ;
Grattarola, M ;
Verreschi, G .
IEEE TRANSACTIONS ON BIOMEDICAL ENGINEERING, 1997, 44 (10) :964-977
[2]   Analysis of the signals generated by networks of neurons coupled to planar arrays of microtransducers in simulated experiments [J].
Bove, M ;
Martinoia, S ;
Verreschi, G ;
Giugliano, M ;
Grattarola, M .
BIOSENSORS & BIOELECTRONICS, 1998, 13 (06) :601-612
[3]   Fluorescence interferometry of neuronal cell adhesion on microstructured silicon [J].
Braun, D ;
Fromherz, P .
PHYSICAL REVIEW LETTERS, 1998, 81 (23) :5241-5244
[4]  
Buitenweg JR, 2000, IEEE ENG MED BIOL, V19, P46, DOI 10.1109/51.887245
[5]   Extracellular detection of active membrane currents in the neuron-electrode interface [J].
Buitenweg, JR ;
Rutten, WLC ;
Marani, E ;
Polman, SKL ;
Ursum, J .
JOURNAL OF NEUROSCIENCE METHODS, 2002, 115 (02) :211-221
[6]   Measurement of sealing resistance of cell-electrode interfaces in neuronal cultures using impedance spectroscopy [J].
Buitenweg, JR ;
Rutten, WLC ;
Willems, WPA ;
van Nieuwkasteele, JW .
MEDICAL & BIOLOGICAL ENGINEERING & COMPUTING, 1998, 36 (05) :630-637
[7]  
Corey DP., 1983, Single-channel recording, P53
[8]   Gene-expression analysis at the single-cell level [J].
Dixon, AK ;
Richardsen, PJ ;
Pinnock, RD ;
Lee, K .
TRENDS IN PHARMACOLOGICAL SCIENCES, 2000, 21 (02) :65-70
[9]   Whole cell patch clamp recording performed on a planar glass chip [J].
Fertig, N ;
Blick, RH ;
Behrends, JC .
BIOPHYSICAL JOURNAL, 2002, 82 (06) :3056-3062
[10]   SILICON-NEURON JUNCTION - CAPACITIVE STIMULATION OF AN INDIVIDUAL NEURON ON A SILICON CHIP [J].
FROMHERZ, P ;
STETT, A .
PHYSICAL REVIEW LETTERS, 1995, 75 (08) :1670-1673