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大鼠大细胞神经分泌细胞中的相位性爆发在体内并非固有再生性的。

Phasic bursts in rat magnocellular neurosecretory cells are not intrinsically regenerative in vivo.

作者信息

Brown Colin H, Bull Philip M, Bourque Charles W

机构信息

School of Biomedical and Clinical Laboratory Sciences, University of Edinburgh, Hugh Robson Building, George Square, Edinburgh EH8 9XD, Scotland, UK.

出版信息

Eur J Neurosci. 2004 Jun;19(11):2977-83. doi: 10.1111/j.0953-816X.2004.03408.x.

Abstract

Vasopressinergic hypothalamic magnocellular neurosecretory cells fire in phasic bursts. Burst initiation involves summation of postsynaptic potentials to generate action potentials. Action potentials are each followed by a nonsynaptic depolarizing after-potential that summates temporally to generate a plateau potential and so sustain activity throughout the burst. It is unknown whether this plateau potential exceeds spike threshold in vivo to cause intrinsic regenerative firing or simply approaches threshold to increase the probability that excitatory postsynaptic potentials will trigger further action potentials. Here we show that pharmacological blockade of ionotropic glutamatergic transmission by microdialysis application of kynurenic acid into the supraoptic nucleus of anaesthetized rats prevents spontaneous bursts and bursts (after-discharge) evoked by short trains of antidromically stimulated action potentials in magnocellular neurosecretory cells. Even during prolonged depolarization induced by 1 m NaCl infusion, kynurenic acid microdialysis application still blocked after-discharge. The ability of kynurenic acid to block after-discharge during osmotic stimulation was not caused by an unmasking of inhibitory postsynaptic potentials as kynurenic acid was equally effective in the presence of the ionotropic gamma-aminobutyric acid receptor antagonist, bicuculline, nor did it result from inhibition of plateau potential amplitude as this was unaffected by kynurenic acid and bicuculline in vitro, as was after-discharge evoked in vitro. We conclude that phasic bursts are nonregenerative in vivo but rather require continued excitatory synaptic input activity superimposed upon a subthreshold plateau potential to sustain burst activity.

摘要

血管加压素能下丘脑大细胞神经分泌细胞以阶段性爆发的形式放电。爆发起始涉及突触后电位的总和以产生动作电位。每个动作电位之后都有一个非突触性去极化后电位,该后电位在时间上总和以产生平台电位,从而在整个爆发过程中维持活动。尚不清楚这种平台电位在体内是否超过动作电位阈值以引起内在的再生性放电,还是仅接近阈值以增加兴奋性突触后电位触发进一步动作电位的概率。在这里,我们表明,通过向麻醉大鼠的视上核微透析应用犬尿氨酸来药理学阻断离子型谷氨酸能传递,可防止大细胞神经分泌细胞中由短串逆向刺激动作电位诱发的自发性爆发和爆发(后放电)。即使在通过输注1 m NaCl诱导的长时间去极化期间,应用犬尿氨酸微透析仍可阻断后放电。犬尿氨酸在渗透刺激期间阻断后放电的能力不是由抑制性突触后电位的暴露引起的,因为犬尿氨酸在离子型γ-氨基丁酸受体拮抗剂荷包牡丹碱存在时同样有效,也不是由抑制平台电位幅度引起的,因为在体外平台电位幅度不受犬尿氨酸和荷包牡丹碱的影响,体外诱发的后放电也是如此。我们得出结论,阶段性爆发在体内是非再生性的,而是需要在阈下平台电位上叠加持续的兴奋性突触输入活动来维持爆发活动。

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