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首页> 外文期刊>Neurochemical research >Extracellular ATP activates chloride and taurine conductances in cultured hippocampal neurons.
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Extracellular ATP activates chloride and taurine conductances in cultured hippocampal neurons.

机译:细胞外ATP激活培养的海马神经元中的氯化物和牛磺酸电导。

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摘要

We investigated regulation by extracellular ATP of channels important for volume regulation of rat hippocampal neurons. Cultures made from fetuses at the eighteenth gestational day were predominantly neuronal after 10-20 days in vitro, as indicated by immunostaining for neuron specific enolase. Neurons recorded with whole-cell patch clamp showed inward currents when membrane voltages were driven to values greater than -50 mV. Chloride conductance increased with 10 microM-100 microM extracellular ATP in a dose-dependent fashion. Similarly, an increase in taurine conductance was observed with 50 microM ATP. These currents were inhibited by the anion channel and purinergic receptor antagonists niflumic acid and suramin, respectively. The chloride conductance response to 10 microM ATP was increased over eight-fold in hypoosmotic medium (250 mOsm); however, chloride conductance in 0 mM ATP was not altered by this osmolality. Thus anion and osmolyte conducting channels activated via purinergic receptors may mediate volume regulation of hippocampal neurons.
机译:我们调查了细胞外ATP对大鼠海马神经元体积调节重要的通道的调节。如对神经元特异性烯醇化酶的免疫染色所指示的,在体外第10-20天后,在第18个妊娠日由胎儿制成的培养物主要是神经元的。当将膜电压驱动到大于-50 mV的值时,用全细胞膜片钳记录的神经元显示出内向电流。 10 microM-100 microM细胞外ATP的氯化物电导以剂量依赖性方式增加。同样,使用50 microM ATP观察到牛磺酸电导增加。这些电流分别被阴离子通道和嘌呤能受体拮抗剂尼氟酸和苏拉明抑制。在低渗介质(250 mOsm)中,氯离子对10 microM ATP的电导响应增加了八倍;但是,该克分子渗透压浓度并未改变0 mM ATP中的氯化物电导。因此,通过嘌呤能受体激活的阴离子和渗透压传导通道可能介导海马神经元的体积调节。

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