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Redox artifacts in electrophysiological recordings

机译:电生理记录中的氧化还原伪影

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Electro-physiological techniques make use of Ag/AgCl electrodes that are in direct contact with cells or bath. In the bath, electrodes are exposed to numerousexperimentalconditionsandchemicalreagentsthatcanmodify electrode voltage. We examined voltage offsets created in Ag/AgCl electrodes by exposure to redox reagents used in electrophysiological studies. Voltage offsets were measured in reference to an electrode separated from the solution by an agar bridge. The reducing reagents Tris-2-carboxyethly-phosphine, dithiothreitol (DTT), and glutathione, as well as the oxidizing agent H2O2 used at experimentally relevant con-centrations reacted with Ag in the electrodes to produce voltage offsets. Chloride ions and strong acids and bases produced offsets at millimolar concentrations. Electrolytic depletion of the AgCl layer, to replicate voltage clamp and sustained use, resulted in increased sensitivity to flow and DTT. Offsets were sensitive to electrode silver purity and to the amount and method of chloride deposition. For example, exposure to 10 μM DTT produced a voltage offset between 10 and 284 mV depending on the chloride deposition method. Currents generated by these offsets are significant and dependent on membrane conductance and by extension the expression of ion channels and may therefore appear to be biological in origin. These data demonstrate a new source of artifacts in electrophysiolog-ical recordings that can affect measurements obtained from a variety of experimental techniques from patch clamp to two-electrode voltage clamp.
机译:电生理技术利用与细胞或浴直接接触的Ag / AgCl电极。在熔池中,电极暴露于多种可改变电极电压的实验条件和化学试剂中。我们检查了通过暴露于电生理研究中使用的氧化还原试剂而在Ag / AgCl电极中产生的电压偏移。参考通过琼脂桥与溶液分离的电极测量电压偏移。还原剂Tris-2-羧基乙基膦,二硫苏糖醇(DTT)和谷胱甘肽,以及在实验上相关浓度下使用的氧化剂H2O2与电极中的Ag反应产生电压偏移。氯离子,强酸和强碱在毫摩尔浓度下产生抵消。 AgCl层的电解消耗,以复制电压钳位并持续使用,导致对流量和DTT的敏感性增加。偏移量对电极银的纯度以及氯化物沉积的数量和方法很敏感。例如,根据氯化物沉积方法,暴露于10μMDTT会产生10至284 mV的电压偏移。由这些偏移产生的电流是很大的,并且取决于膜电导,并且通过扩展离子通道的表达,因此可能看起来是生物学起源。这些数据证明了电生理记录中新的伪影来源,这些伪影会影响从各种实验技术(从膜片钳到两电极电压钳)获得的测量结果。

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