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Dual patch voltage clamp study of low membrane resistance astrocytes in situ

机译:低膜抗性星形胶质细胞的双贴片电压钳位研究原位

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Whole-cell patch clamp recording has been successfully used in identifying the voltage-dependent gating and conductance properties of ion channels in a variety of cells. However, this powerful technique is of limited value in studying low membrane resistance cells, such as astrocytes in situ, because of the inability to control or accurately measure the real amplitude of command voltages. To facilitate the study of ionic conductances of astrocytes, we have developed a dual patch recording method which permits membrane current and membrane potential to be simultaneously recorded from astrocytes in spite of their extraordinarily low membrane resistance. The utility of this technique is demonstrated by measuring the voltage-dependent activation of the inwardly rectifying K+ current abundantly expressed in astrocytes and multiple ionic events associated with astrocytic GABAA receptor activation. This protocol can be performed routinely in the study of astrocytes. This method will be valuable for identifying and characterizing the individual ion channels that orchestrate the electrical activity of low membrane resistance cells.
机译:全电池贴片钳记录已经成功地用于识别各种电池中离子通道的电压依赖性门控和电导性能。然而,这种强大的技术在研究低膜抗性细胞(例如星形胶质细胞)的有限价值是有限的,因为无法控制或准确地测量命令电压的真实幅度。为了促进星形胶质细胞的离子导电的研究,我们开发了一种双贴剂记录方法,其允许膜电流和膜电位同时从星形胶质细胞中记录,尽管它们是非常低的膜抗性。通过测量在星形胶质细胞中大量表达的向内整流k +电流和与星形胶质细胞Gabaa受体激活相关的多种离子事件的向内整流k +电流的电压依赖性激活来证明该技术的效用。该方案可以在星形胶质细胞的研究中常规进行。该方法对于识别和表征单个离子通道来说是有价值的,所述单独的离子通道协调低膜抗性细胞的电活动。

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