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胆碱能、肾上腺素能和嘌呤能神经肌肉传递。

Cholinergic, adrenergic, and purinergic neuromuscular transmission.

作者信息

Burnstock G

出版信息

Fed Proc. 1977 Sep;36(10):2434-8.

PMID:196941
Abstract

A general model of the autonomic neuromuscular junction is proposed which emphasizes muscle effector bundles with gap junctions (or 'nexuses') forming the low resistance pathways allowing electrotonic coupling between neighboring cells, and extensive terminal varicose nerve fibers with 'en passage' release of transmitter. Some variations in autonomic neuromuscular geometry are discussed. Junctional clefts vary from 15nm in densely-innervated tissues such as vas deferens and iris to 2,000 nm in some large elastic arteries. Postjunctional specializations take the form of subsynaptic cysternae (in vas deferens and iris) and aggregations of plasmalemmal vesicles (in circular intestinal muscle). Current views of the synthesis, storage, release, and inactivation of transmitter during cholinergic, adrenergic, and purinergic transmission are summarized.

摘要

提出了一个自主神经肌肉接头的通用模型,该模型强调具有缝隙连接(或“连接子”)的肌肉效应束形成低电阻通路,允许相邻细胞之间进行电紧张性耦合,以及具有递质“沿途”释放的广泛终末曲张神经纤维。讨论了自主神经肌肉几何学的一些变化。连接间隙在诸如输精管和虹膜等密集神经支配的组织中为15纳米,而在一些大的弹性动脉中则为2000纳米。接头后特化表现为突触下池(在输精管和虹膜中)和质膜小泡聚集(在环形肠肌中)。总结了胆碱能、肾上腺素能和嘌呤能传递过程中递质的合成、储存、释放和失活的当前观点。

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