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腺苷A1受体激活抑制交感神经节中的长时程增强。

Adenosine A1 receptor activation inhibits LTP in sympathetic ganglia.

作者信息

Hogan Y H, Hawkins R, Alkadhi K A

机构信息

Department of Biology, Texas Southern University, Houston, TX, USA.

出版信息

Brain Res. 1998 Oct 5;807(1-2):19-28. doi: 10.1016/s0006-8993(98)00694-5.

Abstract

The effects of adenosine on long-term potentiation of sympathetic ganglia was studied in the isolated superior cervical ganglion of the rat, using extracellularly recorded compound action potential as an index of synaptic transmission. Adenosine in a small concentration (2 microM) blocked the post-tetanic potentiation without affecting long-term potentiation. Higher concentrations blocked both responses with no significant effect on basal transmission. The inhibitory effect appears to be due to activation of adenosine A1 receptors. This was indicated by results from experiments with the A1 agonist N6-cyclopentyladenosine (1 microM) which caused inhibition of the basal transmission as well as long-term potentiation and post-tetanic potentiation. This inhibition was readily antagonized by 8-phenyltheophylline (1 microM), an A1 receptor antagonist. A small enhancement of basal transmission was seen on treatment with 8-phenyltheophylline. The inhibitory effect of N6-cyclopentyladenosine on long-term potentiation was totally prevented when the Ca2+ concentration in the superfusate was doubled (from 2.2 to 4.4 mM). The adenosine A2 receptor agonist 5'-(N-cyclopropyl)-carboxamidoadenosine (1 microM), although caused a slight potentiation of basal transmission, had no significant effect on the post-tetanic potentiation or long-term potentiation. The adenosine transport inhibitors, dipyridamole (2 microM) and S-(4-nitorobenzyl)-6-thioinosine (2 microM) caused significant inhibition of the basal ganglionic transmission without affecting post-tetanic potentiation or long-term potentiation. The effect of dipyradimole on basal transmission was not antagonized in the presence of 8-phenyltheophylline suggesting a non-specific action. The results suggest that exogenous adenosine can inhibit both post-tetanic potentiation and long-term potentiation in sympathetic ganglia, probably by activation of presynaptic A1 receptors. The results also suggest that endogenous adenosine, which is probably released in minute amounts, may only modulate basal transmission without influencing induction or maintenance of long-term potentiation in the superior cervical ganglion.

摘要

利用细胞外记录的复合动作电位作为突触传递的指标,在大鼠离体颈上神经节中研究了腺苷对交感神经节长时程增强的影响。低浓度(2微摩尔)的腺苷可阻断强直后增强,而不影响长时程增强。较高浓度则同时阻断这两种反应,对基础传递无显著影响。这种抑制作用似乎是由于腺苷A1受体的激活。A1激动剂N6-环戊基腺苷(1微摩尔)的实验结果表明了这一点,该激动剂可抑制基础传递以及长时程增强和强直后增强。8-苯基茶碱(1微摩尔),一种A1受体拮抗剂,可轻易拮抗这种抑制作用。用8-苯基茶碱处理后,基础传递有轻微增强。当灌流液中的Ca2+浓度加倍(从2.2毫摩尔增加到4.4毫摩尔)时,N6-环戊基腺苷对长时程增强的抑制作用完全被阻止。腺苷A2受体激动剂5'-(N-环丙基)-羧酰胺腺苷(1微摩尔)虽然可使基础传递稍有增强,但对强直后增强或长时程增强无显著影响。腺苷转运抑制剂双嘧达莫(2微摩尔)和S-(4-硝基苄基)-6-硫代肌苷(2微摩尔)可显著抑制神经节基础传递,而不影响强直后增强或长时程增强。在8-苯基茶碱存在的情况下,双嘧达莫对基础传递的作用未被拮抗,提示其作用是非特异性的。结果表明,外源性腺苷可能通过激活突触前A1受体来抑制交感神经节中的强直后增强和长时程增强。结果还表明,内源性腺苷可能仅以微量释放,可能仅调节基础传递,而不影响颈上神经节中长时程增强的诱导或维持。

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