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哺乳动物交感神经节中神经调节后突触后电位的长期增强(LTE)。

Long-term enhancement (LTE) of postsynaptic potentials following neural conditioning, in mammalian sympathetic ganglia.

作者信息

Libet B, Mochida S

机构信息

Department of Physiology, School of Medicine, University of California, San Francisco 94143.

出版信息

Brain Res. 1988 Nov 15;473(2):271-82. doi: 10.1016/0006-8993(88)90856-6.

Abstract

Orthodromic, preganglionic conditioning stimulation can consistently induce long-term enhancement (LTE) (greater than 3 h) of the muscarinically mediated slow excitatory postsynaptic potential and the slow inhibitory postsynaptic potential. This was shown for superior cervical ganglia of rabbit and rat. Effective conditioning stimuli are in a physiologically observed range (3/s for 7 min, 5/s for 4 min, 10/s for 2 min, 20/s for 1 min). LTE was producible both homosynaptically and heterosynaptically. LTE can thus be associative, with conditioning synaptic input in one line inducing long-term changes in postsynaptic responses to another (heterosynaptic) input. The dopamine antagonist butaclamol depressed LTE, particularly that following the initial postconditioning period of 30 min. Adrenergic antagonists had no effect. This pharmacological evidence, coupled with the heterosynaptic induction of LTE, supports the view that neurally induced LTE may be at least partly mediated by endogenous dopamine. Another non-cholinergic but non-adrenergic transmitter (possibly a peptide) might contribute to the LTE seen in the initial 30 min postconditioning. The present, orthodromically induced LTE is clearly different from the long-term potentiation widely studied in hippocampus, etc., in the modes of induction and synaptic mediation.

摘要

顺行性节前条件刺激能够持续诱导毒蕈碱介导的慢兴奋性突触后电位和慢抑制性突触后电位的长期增强(LTE)(大于3小时)。这在兔和大鼠的颈上神经节中得到了证实。有效的条件刺激处于生理观察范围内(3次/秒,持续7分钟;5次/秒,持续4分钟;10次/秒,持续2分钟;20次/秒,持续1分钟)。LTE可通过同突触和异突触方式产生。因此,LTE可以是关联性的,即一条线路中的条件突触输入可诱导对另一个(异突触)输入的突触后反应发生长期变化。多巴胺拮抗剂布他拉莫抑制LTE,尤其是在条件刺激后最初30分钟后的LTE。肾上腺素能拮抗剂则无作用。这一药理学证据,再加上LTE的异突触诱导,支持了神经诱导的LTE可能至少部分由内源性多巴胺介导的观点。另一种非胆碱能但非肾上腺素能递质(可能是一种肽)可能在条件刺激后最初30分钟内出现的LTE中起作用。目前通过顺行性诱导的LTE在诱导方式和突触介导方面明显不同于在海马体等中广泛研究的长期增强。

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