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5-羟色胺对新生大鼠脊髓侧角神经元的兴奋作用。

Excitation of lateral horn neurons of the neonatal rat spinal cord by 5-hydroxytryptamine.

作者信息

Ma R C, Dun N J

出版信息

Brain Res. 1986 Jan;389(1-2):89-98. doi: 10.1016/0165-3806(86)90176-8.

Abstract

The effects of 5-hydroxytryptamine (5-HT) on lateral horn cells contained in thin in vitro slices of neonatal rat spinal cord were investigated by means of intracellular recording techniques. Superfusion of 5-HT (1-100 microM) to lateral horn cells caused a concentration-dependent membrane depolarization leading to, in some instances, repetitive cell discharges. A number of lateral horn cells could be activated antidromically by stimulating the ventral rootlets. The conduction velocity of the antidromic spikes was estimated to be 0.3-2 m/s which corresponds to that of the axons of rat sympathetic preganglionic neurons reported by others. The 5-HT depolarization evoked in neurons that could be activated antidromically was similar to that elicited from unidentified lateral horn cells. The depolarization induced by 5-HT could be partially eliminated by low Ca/high Mg solution or tetrodotoxin in a portion of lateral horn cells and was accompanied by an increase in membrane resistance. The response was nullified near the membrane potential at which the spike after hyperpolarization was abolished; a clear reversal of polarity was not observed at a more negative potential level. The 5-HT depolarization was reversibly blocked by methysergide and cyproheptadine and enhanced by fluoxetine, a 5-HT-uptake inhibitor. The results indicate that the indoleamine primarily exerted an excitatory action on lateral horn cells, including those tentatively identified as sympathetic preganglionic neurons, by a direct depolarization which appears to be mediated by decrease of a voltage-sensitive K conductance and partly by an indirect effect via the release of an excitatory substance(s).

摘要

采用细胞内记录技术,研究了5-羟色胺(5-HT)对新生大鼠脊髓薄片中侧角细胞的作用。向侧角细胞灌注5-HT(1-100微摩尔)会引起浓度依赖性的膜去极化,在某些情况下会导致细胞重复放电。刺激腹侧神经根可逆向激活许多侧角细胞。逆向动作电位的传导速度估计为0.3-2米/秒,这与其他人报道的大鼠交感神经节前神经元轴突的传导速度一致。在可被逆向激活的神经元中,5-HT诱发的去极化与从未鉴定的侧角细胞诱发的去极化相似。在一部分侧角细胞中,5-HT诱导的去极化可被低钙/高镁溶液或河豚毒素部分消除,并伴有膜电阻增加。在超极化后动作电位消失的膜电位附近,反应消失;在更负的电位水平未观察到明显的极性反转。5-HT去极化可被麦角新碱和赛庚啶可逆性阻断,并被5-HT摄取抑制剂氟西汀增强。结果表明,吲哚胺主要通过直接去极化对侧角细胞,包括那些暂定为交感神经节前神经元的细胞,发挥兴奋作用,这种去极化似乎是由电压敏感性钾电导降低介导的,部分是通过释放兴奋性物质的间接作用介导的。

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