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孤立的哺乳动物视网膜神经节细胞中的神经烟碱型乙酰胆碱反应。

Neural nicotinic acetylcholine responses in solitary mammalian retinal ganglion cells.

作者信息

Lipton S A, Aizenman E, Loring R H

机构信息

Division of Neuroscience, Children's Hospital, Boston, MA 02115.

出版信息

Pflugers Arch. 1987 Sep;410(1-2):37-43. doi: 10.1007/BF00581893.

DOI:10.1007/BF00581893
PMID:3684508
Abstract

Using the patch-clamp technique, whole-cell recordings from solitary rat retinal ganglion cells in culture have established the nicotinic nature of the acetylcholine responses in these central neurons. Currents produced by acetylcholine (5-20 mumol/l) or nicotine (5-20 mumol/l) reversed in polarity near -5 mV and were unaffected by atropine (10 mumol/l). Agonist-induced currents were blocked by low doses (2-10 mumol/l) of the classical 'ganglionic' antagonists hexamethonium and mecamylamine, as well as by d-tubocurarine and dihydro-beta-erythroidine (the latter two do not discriminate clearly between ganglionic and neuromuscular junction receptors). Treatment with the potent neuromuscular blocking agent alpha-bungarotoxin (10 mumol/l) did not affect the cholinergic responses of these cells, while toxin F (0.2 mumol/l), a neural nicotinic receptor antagonist, readily abolished acetylcholine-induced currents. Thus, the experiments performed to date show that the nicotinic responses of retinal ganglion cells in the central nervous system share the pharmacology of autonomic ganglion cells in the peripheral nervous system. The ionic current carried by the nicotinic channels was selective for cations, similar to that described for nicotinic channels in other tissues. In addition, single-channel currents elicited by acetylcholine were observed in whole-cell recordings with seals greater than 5 G omega as well as in occasional outside-out patches of membrane. These acetylcholine-activated events, which had a unitary conductance of 48 pS and a reversal potential of 0 mV, represent the ion channels that mediate the neural nicotinic responses observed in these experiments on retinal ganglion cells.

摘要

运用膜片钳技术,对培养的大鼠单个视网膜神经节细胞进行全细胞记录,已证实这些中枢神经元中乙酰胆碱反应具有烟碱样特性。乙酰胆碱(5 - 20 μmol/L)或尼古丁(5 - 20 μmol/L)产生的电流在接近 -5 mV 时极性反转,且不受阿托品(10 μmol/L)影响。激动剂诱导的电流被低剂量(2 - 10 μmol/L)的经典“神经节”拮抗剂六甲铵和美加明阻断,也被筒箭毒碱和二氢β - 刺桐碱阻断(后两者不能明确区分神经节和神经肌肉接头受体)。用强效神经肌肉阻滞剂α - 银环蛇毒素(10 μmol/L)处理并不影响这些细胞的胆碱能反应,而毒素 F(0.2 μmol/L),一种神经烟碱受体拮抗剂,能轻易消除乙酰胆碱诱导的电流。因此,迄今为止所进行的实验表明,中枢神经系统中视网膜神经节细胞的烟碱样反应与外周神经系统中自主神经节细胞具有相同的药理学特性。烟碱通道携带的离子电流对阳离子具有选择性,类似于其他组织中描述的烟碱通道。此外,在密封电阻大于 5 GΩ 的全细胞记录以及偶尔的膜外侧向外膜片中观察到了乙酰胆碱引发的单通道电流。这些乙酰胆碱激活事件的单位电导为 48 pS,反转电位为 0 mV,代表了介导这些视网膜神经节细胞实验中所观察到的神经烟碱样反应的离子通道。

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