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K Ca 3.1 channels modulate the processing of noxious chemical stimuli in mice

机译:K CA 3.1通道调节小鼠中有毒化学刺激的处理

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摘要

Abstract Intermediate conductance calcium-activated potassium channels (K Ca 3.1) have been recently implicated in pain processing. However, the functional role and localization of K Ca 3.1 in the nociceptive system are largely unknown. We here characterized the behavior of mice lacking K Ca 3.1 (K Ca 3.1 ?/? ) in various pain models and analyzed the expression pattern of K Ca 3.1 in dorsal root ganglia (DRG) and the spinal cord. K Ca 3.1 ?/? mice demonstrated normal behavioral responses in models of acute nociceptive, persistent inflammatory, and persistent neuropathic pain. However, their behavioral responses to noxious chemical stimuli such as formalin and capsaicin were increased. Accordingly, formalin-induced nociceptive behavior was increased in wild-type mice after administration of the K Ca 3.1 inhibitor TRAM-34. In situ hybridization experiments detected K Ca 3.1 in most DRG satellite glial cells, in a minority of DRG neurons, and in ependymal cells lining the central canal of the spinal cord. Together, our data point to a specific inhibitory role of K Ca 3.1 for the processing of noxious chemical stimuli. Highlights ? K Ca 3.1 ?/? mice show increased behavioral responses to noxious chemical stimuli. ? K Ca 3.1 ?/? mice show normal behavioral responses in models of persistent inflammatory and neuropathic pain. ? K Ca 3.1 channel expression in dorsal root ganglia and the spinal cord is mostly localized to non-neuronal cells.
机译:摘要中间电导钙活化钾通道(K CA 3.1)最近含有疼痛加工。然而,伤害性系统中K CA 3.1的功能作用和定位在很大程度上是未知的。我们在这里表征了各种疼痛模型中缺乏K Ca 3.1(K Ca 3.1?//)的小鼠的行为,并分析了背根神经节(DRG)和脊髓中K Ca 3.1的表达模式。 K CA 3.1?/?小鼠展示了急性伤害,持续炎症和持续神经病疼痛的模型中的正常行为响应。然而,对福尔马林和辣椒素等有害化学刺激的行为反应增加。因此,在施用K CA 3.1抑制仪TRAM-34后,野生型小鼠中,福尔马林诱导的伤害性行为增加。在原位杂交实验中检测到大多数DRG卫星胶质细胞中的K CA 3.1,在DRG神经元中,并在脊髓中央管中衬砌的突突细胞中。在一起,我们的数据指向K CA 3.1的特定抑制作用,用于加工有害化学刺激。强调 ? K CA 3.1?/?小鼠显示对有害化学刺激的行为反应。还K CA 3.1?/?小鼠在持续炎症和神经病疼痛的模型中显示正常行为响应。还K Ca 3.1背根神经节和脊髓的通道表达主要是非神经元细胞的。

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  • 来源
    《Neuropharmacology》 |2017年第2017期|共10页
  • 作者单位

    Pharmakologisches Institut für Naturwissenschaftler Goethe-Universit?t Fachbereich Biochemie;

    Pharmakologisches Institut für Naturwissenschaftler Goethe-Universit?t Fachbereich Biochemie;

    Pharmakologisches Institut für Naturwissenschaftler Goethe-Universit?t Fachbereich Biochemie;

    Pharmakologisches Institut für Naturwissenschaftler Goethe-Universit?t Fachbereich Biochemie;

    Institut für Pharmakologie und Toxikologie Universit?t Witten/Herdecke ZBAF;

    Pharmakologisches Institut für Naturwissenschaftler Goethe-Universit?t Fachbereich Biochemie;

    Pharmakologie Toxikologie und Klinische Pharmazie Institut für Pharmazie Universit?t Tübingen;

    Pharmakologie Toxikologie und Klinische Pharmazie Institut für Pharmazie Universit?t Tübingen;

    Pharmakologisches Institut für Naturwissenschaftler Goethe-Universit?t Fachbereich Biochemie;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 药理学;
  • 关键词

    Pain; Potassium channel; KCa3.1; SK4; TRAM-34; Satellite glial cells;

    机译:疼痛;钾通道;KCA3.1;SK4;电车34;卫星胶质细胞;
  • 入库时间 2022-08-20 04:36:04

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