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首页> 外文期刊>Naunyn-Schmiedeberg's Archives of Pharmacology >The actions of ryanodine on Ca2+-activated conductances in rat cultured DRG neurones; evidence for Ca2+-induced Ca2+ release.
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The actions of ryanodine on Ca2+-activated conductances in rat cultured DRG neurones; evidence for Ca2+-induced Ca2+ release.

机译:ryanodine对大鼠培养的DRG神经元中Ca2 +激活的电导的作用; Ca2 +诱导的Ca2 +释放的证据。

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摘要

The whole-cell recording technique was used to investigate the actions of a calcium release channel ligand, ryanodine, on calcium-activated chloride conductances, and to evaluate ryanodine-sensitive Ca2+-induced Ca2+ release from intracellular stores in cultured neonatal rat DRG neurones. The aim of the project was to use ryanodine as a pharmacological tool to evaluate calcium-induced calcium release in the cell bodies of cultured DRG neurones. Action potential after-depolarizations were attenuated by extracellular application of the chloride channel blocker, niflumic acid (10 microM), and by ryanodine (10 microM); these actions occurred without concurrent changes in evoked action potentials. Ryanodine and caffeine (10 mM) activated calcium-dependent conductances and the responses to ryanodine were attenuated by depletion of caffeine-sensitive Ca2+ stores. The current clamp data were complicated by changes in potassium conductances so studies were carried out under voltage clamp and voltage-activated calcium currents and calcium-activated chloride and non-selective cation currents were isolated pharmacologically. Ryanodine (10 microM) evoked delayed, inward, calcium-activated non-selective cation and chloride currents which reversed close to 0 mV and were attenuated by N-methyl-D-glucamine, niflumic acid and dantrolene. Consistent with actions on action potential after-depolarizations, niflumic acid (10 microM) and ryanodine (10 microM) attenuated calcium-activated chloride currents evoked by calcium entry through voltage-activated calcium channels. Niflumic acid and ryanodine had no effects on voltage-activated calcium currents evoked from a holding potential of -90 mV by voltage step commands to 0 mV. In conclusion calcium-activated chloride conductances appear to be activated in part by calcium released from ryanodine-sensitive stores, and significant calcium-induced calcium release may occur locally in cell bodies of DRG neurones as a result of calcium entry through voltage-activated channels during an action potential.
机译:全细胞记录技术用于研究钙释放通道配体ryanodine对钙激活的氯离子电导的作用,并评估由ryanodine敏感的Ca2 +诱导的Ca2 +从培养的新生大鼠DRG神经元的细胞内存储释放。该项目的目的是使用ryanodine作为药理学工具来评估培养的DRG神经元细胞体内钙诱导的钙释放。细胞外应用氯化物通道阻滞剂,尼氟酸(10 microM)和ryanodine(10 microM)可减弱去极化后的动作电位。这些动作的发生没有引起动作电位的同时变化。 Ryanodine和咖啡因(10 mM)激活了钙依赖性电导,并且由于咖啡因敏感的Ca2 +存储库的耗尽,减弱了对ryanodine的反应。电流钳制数据由于钾电导的变化而变得复杂,因此在电压钳制下进行了研究,并通过药理学方法分离了电压激活的钙电流,钙激活的氯离子和非选择性阳离子电流。 Ryanodine(10 microM)引起延迟的,内向的,钙激活的非选择性阳离子和氯化物电流,其反向接近0 mV,并被N-甲基-D-葡糖胺,尼氟酸和丹特灵减弱。与去极化后对动作电位的作用一致,尼氟酸(10 microM)和ryanodine(10 microM)减弱了钙通过电压激活的钙通道进入所引起的钙激活的氯化物电流。尼氟酸和碱对电压激活的钙电流没有影响,该电流通过电压阶跃命令从-90 mV的保持电位上升到0 mV。总而言之,钙激活的氯离子电导似乎部分地被从对精氨酸敏感的储存所释放的钙所激活,并且由于钙通过电压激活的通道进入,DRG神经元的细胞体中可能局部发生明显的钙诱导的钙释放。动作电位。

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