首页> 外文期刊>Neuroreport >Axotomy differentially regulates voltage-gated calcium currents in mice sensory neurones.
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Axotomy differentially regulates voltage-gated calcium currents in mice sensory neurones.

机译:轴切术在小鼠感觉神经元中差异调节电压门控钙电流。

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摘要

Medium sized dorsal root ganglion neurones are involved in tactile sensation and responsible for allodynia following nerve injury. We examined the effects of sciatic nerve injury on the expression of low and high voltage-gated calcium currents in medium sized neurones isolated from lumbar dorsal root ganglia of adult mice. Based on the relative expression of these calcium channel types, three populations of medium sized neurones were identified in controls. Type I, II and III populations were characterised respectively by small, predominant and no low voltage-gated current compared to the high voltage-gated current. Five days after nerve injury, calcium current expression was differentially affected by axotomy in these three subsets of medium neurones. Altogether, these results suggest that calcium channels are heterogeneously distributed among the medium sized neurones. This heterogeneity should provide specificity not only to sensory functions but also to sensory responses following nerve injury.
机译:中型背根神经节神经元参与触觉,负责神经损伤后的异常性疼痛。我们检查了坐骨神经损伤对成年小鼠腰背根神经节分离出的中型神经元中低和高电压门控钙电流表达的影响。基于这些钙通道类型的相对表达,在对照中鉴定出三个中等大小的神经元群体。与高电压门控电流相比,I,II和III型人群的特征分别是小的,主要的且没有低电压门控电流。神经损伤后五天,在这三个中层神经元亚群中,轴切对钙电流表达的影响不同。总而言之,这些结果表明钙通道在中等大小的神经元之间异质分布。这种异质性不仅应提供感觉功能的特异性,还应提供神经损伤后的感觉反应的特异性。

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