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膀胱壁内神经元:一项利用组织培养制备物的电生理学研究。

Urinary bladder intramural neurones: an electrophysiological study utilizing a tissue culture preparation.

作者信息

Pittam B S, Burnstock G, Purves R D

出版信息

Brain Res. 1987 Feb 17;403(2):267-78. doi: 10.1016/0006-8993(87)90064-3.

Abstract

An enzymic dispersion technique was used to free the intramural ganglia from their usual close association with the other components of the urinary bladder wall. The isolated ganglia obtained were viable and could be kept in culture for several weeks. The development of the cultures was monitored by phase-contrast microscopy and their electrophysiological properties were investigated using intracellular recording techniques. Neurones could be visually identified after 2-3 days in culture; cell groups contained from 2-50 neurones. Three types of spontaneous activity were seen: small changes in membrane potential and action potentials, and slow oscillatory conductance changes. These events were not blocked by hexamethonium but were abolished by hyperpolarizing current. Most neurones spiked without adaptation to direct stimulation; in a few cells the train of spikes was damped out. No neurones generated long afterhyperpolarizations. Indirect stimulation produced responses in the ganglia which are consistent with synaptic activity. Summation of inputs was demonstrated. These results provide evidence for local intraganglionic circuits since the ganglia or neurone groups are unequivocally extrinsically denervated. It was concluded that the intramural ganglia have the capacity to integrate preganglionic input and the question of whether or not they might mediate reflex activity is raised.

摘要

采用酶分散技术使壁内神经节与其在膀胱壁中通常紧密相连的其他成分分离。所获得的分离神经节具有活性,可在培养中保存数周。通过相差显微镜监测培养物的发育,并使用细胞内记录技术研究其电生理特性。培养2 - 3天后可在视觉上识别出神经元;细胞群包含2 - 50个神经元。观察到三种类型的自发活动:膜电位的微小变化、动作电位以及缓慢的振荡性电导变化。这些活动未被六甲铵阻断,但被超极化电流消除。大多数神经元在直接刺激下产生动作电位且无适应性;少数细胞中的一串动作电位会逐渐减弱。没有神经元产生长时间的超极化后电位。间接刺激在神经节中产生了与突触活动一致的反应。证实了输入的总和。由于神经节或神经元群明确地处于外在去神经支配状态,这些结果为局部神经节内回路提供了证据。得出的结论是,壁内神经节有能力整合节前输入,并提出了它们是否可能介导反射活动的问题。

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