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Micro-agar salt bridge in patch-clamp electrode holder stabilizes electrode potentials

机译:膜片钳式电极夹中的微琼脂盐桥可稳定电极电位

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摘要

Maintaining a stable electrode potential is critical for patch-clamp measurements. The electrode potential of conventional patch electrode-holder assembly, where an Ag/AgCl wire is in direct contact with the patch pipette filling solution, is subject to drift if the pipette solution contains a low concentration of chloride ions (Cl). We developed an agar bridge of 3 M KCl filled in a polyimide microtubing which forms an electrical connection between an Ag/AgCl wire and the pipette solution. We examined the offset potentials of the micro-agar salt bridge electrode assembly in parallel with a conventional electrode assembly in generic recording conditions (the pipette solution contained 5 mM NaCl). The junction potential between the Ag/AgCl wire and the pipette filling solution in the conventional electrode contributed to most of the offset potential drift observed during the course of 30 min recordings. The drift was up to 27.3 mV after several changes of the glass pipette. In contrast, the micro-agar salt bridge stabilized the electrode potential within typically 2 mV without affecting the patch electrode resistance, capacitance or noise level. Numerical simulations showed that Cl diffusion from the agar bridge to the tip caused a negligible 0.4 μM Cl concentration change at the pipette tip within 30 min. This method is easy to implement and provides long-term recording stability. The micro-agar salt bridge can fit in most commercial patch electrode holders and can be conveniently maintained.
机译:维持稳定的电极电位对于膜片钳测量至关重要。如果移液器溶液中的氯离子浓度较低(Cl -< / sup>)。我们开发了一个3 M KCl的琼脂桥,该桥填充有聚酰亚胺微管,可在Ag / AgCl线和移液器溶液之间形成电连接。我们在常规记录条件下(移液溶液中含5 mM NaCl)检查了平行于常规电极组件的微琼脂盐桥电极组件的偏移电位。在传统电极中,Ag / AgCl焊丝和移液管填充液之间的接合电位导致了在30分钟记录过程中观察到的大部分偏移电位漂移。多次更换玻璃移液器后,漂移高达27.3 mV。相反,微琼脂盐桥将电极电势稳定在2 mV以内,而不会影响贴片电极的电阻,电容或噪声水平。数值模拟表明,Cl -从琼脂桥到尖端的扩散导致30分钟内移液器尖端的0.4μMCl -浓度变化可忽略不计。此方法易于实现,并提供长期的记录稳定性。微琼脂盐桥可以安装在大多数商用贴片电极支架中,并且可以方便地进行维护。

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