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I-KD Current in Cold Transduction and Damage-Triggered Cold Hypersensitivity

机译:I-KD电流在冷转导和损伤触发的冷超敏反应

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摘要

In primary sensory neurons of the spinal and trigeminal somatosensory system, cold-sensitivity is strongly dependent on the functional balance between TRPM8 channels, the main molecular entity responsible for the cold-activated excitatory current, and Shaker-like Kv1.1-1.2 potassium channels, the molecular counterpart underlying the excitability brake current I-KD. This slow-inactivating outward K+ current reduces the excitability of cold thermoreceptor neurons increasing their thermal threshold, and prevents unspecific activation by cold of neurons of other somatosensory modalities. Here we examine the main biophysical properties of this current in primary sensory neurons, its central role in cold thermotransduction, and its contribution to alterations in cold sensitivity triggered by peripheral nerve damage.
机译:在脊柱和三叉子躯体感应系统的主要感觉神经元中,冷灵敏度强烈依赖于TRPM8通道之间的功能平衡,负责冷活兴奋剂电流的主要分子实体,以及振荡器的KV1.1.2钾通道 ,兴奋性制动电流I-Kd下面的分子对应物。 这种慢性失活的向外K +电流降低了冷热因子神经元增加热阈值的兴奋性,并防止了其他躯体感觉形式的神经元的寒冷的非特异性活化。 在这里,我们研究了在初级感官神经元中该电流的主要生物物理性质,其在冷热传递中的核心作用,以及其对周围神经损伤引发的冷敏感性的改变的贡献。

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