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Cell-attached recordings of responses evoked by photorelease of GABA in the immature cortical neurons

机译:未成熟皮质神经元中GABA释放引起的反应的细胞附着记录

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摘要

We present a novel non-invasive technique to measure the polarity of GABAergic responses based on cell-attached recordings of currents activated by laser-uncaging of GABA. For these recordings, a patch pipette was filled with a solution containing RuBi-GABA, and GABA was released from this complex by a laser beam conducted to the tip of the patch pipette via an optic fiber. In cell-attached recordings from neocortical and hippocampal neurons in postnatal days P2-5 rat brain slices in vitro, we found that laser-uncaging of GABA activates integral cell-attached currents mediated by tens of GABA(A) channels. The initial response was inwardly directed, indicating a depolarizing response to GABA. The direction of the initial response was dependent on the pipette potential and analysis of its slope-voltage relationships revealed a depolarizing driving force of +11 mV for the currents through GABA channels. Initial depolarizing responses to GABA uncaging were inverted to hyperpolarizing in the presence of the NKCC1 blocker bumetanide. Current-voltage relationships of the currents evoked by RuBi-GABA uncaging using voltage-ramps at the peak of responses not only revealed a bumetanide-sensitive depolarizing reversal potential of the GABA(A) receptor mediated responses, but also showed a strong voltage-dependent hysteresis. Upon desensitization of the uncaged-GABA response, current-voltage relationships of the currents through single GABA(A) channels revealed depolarizing responses with the driving force values similar to those obtained for the initial response. Thus, cell-attached recordings of the responses evoked by local intrapipette GABA uncaging are suitable to assess the polarity of the GABA(A)-Rs mediated signals in small cell compartments.
机译:我们提出了一种新的非侵入性技术,可根据通过细胞解开GABA激活电流激活的细胞附着记录来测量GABA能反应的极性。对于这些记录,用含RuBi-GABA的溶液填充贴片移液器,并通过光纤将激光束传导到贴片移液器的尖端,从而从复合物中释放GABA。在出生后P2-5大鼠脑切片的体外新皮层和海马神经元的细胞附着记录中,我们发现激光释放GABA激活了数十个GABA(A)通道介导的整合细胞附着电流。最初的反应是向内的,表明对GABA的去极化反应。初始响应的方向取决于移液器的电位,对其斜率-电压关系的分析表明,通过GABA通道的电流的去极化驱动力为+11 mV。在存在NKCC1阻断剂布美他尼的情况下,对GABA解笼的初始去极化反应转化为超极化。 RuBi-GABA在响应峰值处使用电压斜坡解笼引发的电流的电流-电压关系不仅显示出GABA(A)受体介导的反应对布美他尼敏感的去极化反转电位,而且还显示出强烈的电压依赖性磁滞现象。在对未老化的GABA反应进行脱敏后,通过单个GABA(A)通道的电流的电流-电压关系显示出去极化响应,其驱动力值与初始响应相似。因此,由局部移液器内的GABA解笼引起的反应的细胞附着记录适合评估小细胞区室中GABA(A)-Rs介导的信号的极性。

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