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Palmitoyl-DL-carnitine has calcium-dependent effects on cultured neurones from rat dorsal root ganglia.

机译:棕榈酰-DL-肉碱对大鼠背根神经节的神经元具有钙依赖性作用。

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摘要

1. The effects of palmitoyl-DL-carnitine (0.01 to 1 mM) on whole cell voltage-activated calcium channel currents carried by calcium or barium and Ca(2+)-activated chloride currents were studied in cultured neurones from rat dorsal root ganglia. 2. Palmitoyl-DL-carnitine applied to the extracellular environment or intracellularly via the patch solution reduced Ca2+ currents activated over a wide voltage range from a holding potential of -90 mV. Inhibition of high voltage activated Ca2+ channel currents was dependent on intracellular Ca2+ buffering and was reduced by increasing the EGTA concentration from 2 to 10 mM in the patch solution. Barium currents were significantly less sensitive to palmitoyl-DL-carnitine than Ca2+ currents. 3. The amplitude of Ca(2+)-activated Cl- tail currents was reduced by palmitoyl-DL-carnitine. However, the duration of these Cl- currents was greatly prolonged by palmitoyl-DL-carnitine, suggesting slower removal of free Ca2+ from the cytoplasm following Ca2+ entry through voltage-activated channels. 4. Palmitoyl-DL-carnitine evoked Ca(2+)-dependent inward currents which could be promoted by activation of the residual voltage-activated Ca2+ currents and attenuated by intracellular application of EGTA. 5. We conclude that palmitoyl-DL-carnitine reduced the efficiency of intracellular Ca2+ handling in cultured dorsal root ganglion neurones and resulted in enhancement of Ca(2+)-dependent events including inactivation of voltage-activated Ca2+ currents. The activation of inward currents by palmitolyl-DL-carnitine may involve Ca(2+)-induced Ca2+ release from intracellular stores, or direct interaction of palmitoyl-DL-carnitine with Ca2+ stores.
机译:1.在大鼠背根神经节的培养神经元中研究了棕榈酰-DL-肉碱(0.01至1 mM)对钙或钡携带的全细胞电压激活的钙通道电流和Ca(2+)激活的氯离子电流的影响。 。 2.通过贴片溶液应用于细胞外环境或细胞内的棕榈酰-DL-肉碱降低了Ca2 +电流,该电流在-90 mV的保持电势的宽电压范围内被激活。抑制高压激活的Ca2 +通道电流取决于细胞内Ca2 +缓冲液,并通过将贴片溶液中的EGTA浓度从2 mM增加到10 mM来降低。钡电流对棕榈酰-DL-肉碱的敏感性明显低于Ca2 +电流。 3.棕榈酰-DL-肉碱降低了Ca(2+)激活的Cl-尾电流的幅度。然而,棕榈酰-DL-肉碱大大延长了这些Cl-电流的持续时间,表明在Ca2 +通过电压激活通道进入细胞后,游离Ca2 +从细胞质中的去除较慢。 4.棕榈酰-DL-肉碱引起Ca(2+)依赖性内向电流,其可以通过残余电压活化的Ca2 +电流的活化来促进,并通过EGTA的细胞内应用而减弱。 5.我们得出的结论是,棕榈酰-DL-肉碱降低了培养的背根神经节神经元细胞内Ca2 +处理的效率,并导致Ca(2+)依赖事件的增强,包括电压激活的Ca2 +电流的失活。棕榈糖基-DL-肉碱的内向电流的激活可能涉及Ca(2+)诱导的Ca2 +从细胞内储存的释放,或棕榈酰-DL-肉碱与Ca2 +储存的直接相互作用。

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