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首页> 外文期刊>American Journal of Physiology >Actions of substance P on membrane potential and ionic currents in guinea pig stellate ganglion neurons.
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Actions of substance P on membrane potential and ionic currents in guinea pig stellate ganglion neurons.

机译:P物质对豚鼠星状神经节神经元膜电位和离子电流的作用。

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摘要

Neuropeptides are known to modulate the excitability of mammalian sympathetic neurons by their actions on various types of K+ and Ca2+ channels. We used whole cell patch-clamp recording methods to study the actions of substance P (SP) on dissociated adult guinea pig stellate ganglion (SG) neurons. Under current-clamp conditions, SG neurons exhibited overshooting action potentials followed by afterhyperpolarizations (AHP). The K+ channel blocker tetraethylammonium (1 mM), the Ca2+ channel blocker Cd2+ (0.1-0.2 mM), and SP (500 nM) depolarized SG neurons, decreased the AHP amplitude, and increased the action potential duration. In the presence of Cd2+, the effect of SP on membrane potential and AHP was reduced. Under voltage-clamp conditions, several different K+ currents were observed, including a transient outward K+ conductance and a delayed rectifier outward K+ current (IK) consisting of Ca(2+)-sensitive [IK(Ca)] and Ca(2+)-insensitive components. SP (500 nM) inhibited IK. Pretreatment with Cd2+ (20-200 microM) or the high-voltage-activated Ca2+ channel blocker omega-conotoxin (10 microM) blocked SP's inhibitory effects on IK. This suggests that SP reduces IK primarily through the inhibition of IK(Ca) and that this may occur, in part, via a reduction of Ca2+ influx through voltage-dependent Ca2+ channels. SP's actions on IK were mediated by a pertussis toxin-insensitive G protein(s) coupled to NK1 tachykinin receptors. Furthermore, we have confirmed that 500 nM SP reduced an inward Cd(2+)- and omega-conotoxin-sensitive Ba2+ current in SG neurons. Thus the actions of SP on IK(Ca) may be due in part to a reduction in Ca2+ influx occurring via N-type Ca2+ channels. This study presents the first description of ionic currents in mammalian SG neurons and demonstrates that SP may modulate excitability in SG neurons via inhibitory actions on K+ and Ca2+ currents.
机译:已知神经肽通过它们对各种类型的K +和Ca2 +通道的作用来调节哺乳动物交感神经元的兴奋性。我们使用全细胞膜片钳记录方法来研究P物质(SP)对离体成年豚鼠星状神经节(SG)神经元的作用。在电流钳制条件下,SG神经元表现出超调动作电位,随后出现超极化(AHP)。 K +通道阻滞剂四乙铵(1 mM),Ca2 +通道阻滞剂Cd2 +(0.1-0.2 mM)和SP(500 nM)使SG神经元去极化,降低了AHP振幅,并增加了动作电位的持续时间。在Cd2 +存在下,SP对膜电位和AHP的影响降低了。在电压钳制条件下,观察到几种不同的K +电流,包括瞬​​态向外K +电导和由Ca(2+)敏感的[IK(Ca)]和Ca(2+)组成的延迟整流器向外K +电流(IK)。 -不敏感的组件。 SP(500 nM)抑制IK。用Cd2 +(20-200 microM)或高压激活的Ca2 +通道阻滞剂omega-conotoxin(10 microM)进行预处理可阻断SP对IK的抑制作用。这表明SP主要是通过抑制IK(Ca)来降低IK,并且这可能部分地是通过依赖电压依赖性Ca2 +通道的Ca2 +流入减少而发生的。 SP对IK的作用是由与NK1速激肽受体偶联的百日咳毒素不敏感G蛋白介导的。此外,我们已经证实500 nM SP减少了SG神经元的内向Cd(2 +)-和ω-芋螺毒素敏感的Ba2 +电流。因此,SP对IK(Ca)的作用可能部分归因于经由N型Ca2 +通道发生的Ca2 +内流减少。这项研究提出了哺乳动物SG神经元中离子电流的第一个描述,并证明SP可能通过对K +和Ca2 +电流的抑制作用来调节SG神经元中的兴奋性。

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