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Role of voltage-gated calcium channels in ascending pain pathways.

机译:电压门控钙通道在疼痛通路中的作用。

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Voltage gated calcium channels (VGCCs) are well established mediators of pain signals in primary afferent neurons. N-type calcium channels are localized to synaptic nerve terminals in laminae 1 and 2 of the dorsal horn where their opening results in the release of neurotransmitters such as glutamate and substance P. The contribution of N-type channels to the processing of pain signals is regulated by alternate splicing of the N-type channel gene, with unique N-type channel splice variants being expressed in small nociceptive neurons. In contrast, T-type VGCCs of the Ca(v)3.2 subtype are likely localized to nerve endings where they regulate cellular excitability. Consequently, inhibition of N-type and Ca(v)3.2 T-type VGCCs has the propensity to mediate analgesia. T-type channel activity is regulated by redox modulation, and can be inhibited by a novel class of small organic blockers. N-type VGCC activity can be potently inhibited by highly selective peptide toxins that are delivered intrathecally, and the search for small organic blockers with clinical efficacy is ongoing. Here, we provide a brief overview of recent advances in this area, as presented at the Spring Pain Research conference (Grand Cayman, 2008).
机译:电压门控钙通道(VGCC)是原发传入神经元中疼痛信号的公认调解人。 N型钙通道位于背角第1和第2层的突触神经末梢,在那里它们的开放导致诸如谷氨酸和P物质等神经递质的释放。N型通道对疼痛信号处理的贡献是通过交替剪接N型通道基因进行调控,在小伤害性神经元中表达独特的N型通道剪接变体。相反,Ca(v)3.2亚型的T型VGCC可能位于神经末梢,它们调节细胞的兴奋性。因此,抑制N型和Ca(v)3.2 T型VGCC具有介导镇痛的倾向。 T型通道的活性受氧化还原调节的调节,并且可以被一类新型的小有机阻滞剂抑制。 N型VGCC活性可以被鞘内递送的高度选择性肽毒素有效抑制,并且正在寻找具有临床疗效的小型有机阻滞剂。在这里,我们简要概述了该领域的最新进展,如Spring Pain Research会议(Grand Cayman,2008年)所介绍。

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