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γ-氨基丁酸对豚鼠离体膀胱收缩活动的双重作用。

Dual effect of GABA on the contractile activity of the guinea-pig isolated urinary bladder.

作者信息

Maggi C A, Santicioli P, Meli A

出版信息

J Auton Pharmacol. 1985 Jun;5(2):131-41. doi: 10.1111/j.1474-8673.1985.tb00114.x.

Abstract

The effects of GABA and related substances were examined in isolated detrusor strips from the dome of the guinea-pig urinary bladder. GABA (0.01-1 mM) produced concentration-related phasic contractions of isolated strips from the guinea-pig urinary bladder dome. This effect of GABA was mimicked by homotaurine and muscimol, selective GABAA receptor agonists but not by (+/-)-baclofen, a selective GABAB receptor agonist. A specific cross desensitization was observed between GABA, homotaurine and muscimol but not between (+/-)-baclofen and GABA. GABA (1 mM)-induced contractions were antagonized by picrotoxin, a selective GABAA receptor antagonist. GABA-induced contractions were almost abolished by tetrodotoxin (0.5 microM, TTX) thus indicating their neurogenic origin. In addition GABA-induced contractions were partially antagonized by atropine (to about the same extent as those produced by dimethylphenylpiperazinium (DMPP), a ganglionic stimulant), but were unaffected by hexamethonium (10 microM), phentolamine (0.2 microM) or indomethacin (5 microM). In the presence of GABA the contractile effect of both DMPP (TTX-sensitive) and acetylcholine (ACh, TTX-insensitive) were significantly reduced. Similar findings were obtained with DMPP, i.e. in preparations exposed to this ganglionic stimulant both GABA- and ACh-induced contractions were depressed. Homotaurine but not (+/-)-baclofen mimicked the depressant effect of GABA on DMPP-induced contractions. The depressant effect of GABA on ACh-induced contractions of the guinea-pig urinary bladder was neurogenic in origin, i.e., was not observed in preparations exposed to TTX. These experiments indicate that GABA has a dual effect on the contractile behaviour of the guinea-pig isolated urinary bladder. Recently it has been proposed that endogenous GABA plays a neuromodulatory role in this organ. Our data suggest that in the early phase of neurogenic activation of detrusor muscle (micturition reflex) GABA might transiently enhance excitatory neurotransmission followed by a more sustained inhibition of contractility.

摘要

在豚鼠膀胱顶部分离的逼尿肌条上研究了γ-氨基丁酸(GABA)及相关物质的作用。GABA(0.01 - 1 mM)可使豚鼠膀胱顶部分离条产生浓度相关的相位性收缩。同型牛磺酸和蝇蕈醇(选择性GABAA受体激动剂)可模拟GABA的这种作用,但选择性GABAB受体激动剂(±)-巴氯芬则不能。在GABA、同型牛磺酸和蝇蕈醇之间观察到特异性交叉脱敏,但在(±)-巴氯芬和GABA之间未观察到。GABA(1 mM)诱导的收缩被选择性GABAA受体拮抗剂印防己毒素所拮抗。河豚毒素(0.5 μM,TTX)几乎完全消除了GABA诱导的收缩,这表明其起源于神经源性。此外,GABA诱导的收缩被阿托品部分拮抗(拮抗程度与神经节兴奋剂二甲基苯基哌嗪(DMPP)产生的收缩相当),但不受六甲铵(10 μM)、酚妥拉明(0.2 μM)或吲哚美辛(5 μM)的影响。在存在GABA的情况下,DMPP(TTX敏感)和乙酰胆碱(ACh,TTX不敏感)的收缩作用均显著降低。用DMPP也得到了类似的结果,即在暴露于这种神经节兴奋剂的制剂中,GABA和ACh诱导的收缩均受到抑制。同型牛磺酸可模拟GABA对DMPP诱导收缩的抑制作用,但(±)-巴氯芬则不能。GABA对豚鼠膀胱ACh诱导收缩的抑制作用起源于神经源性,即在暴露于TTX的制剂中未观察到。这些实验表明,GABA对豚鼠离体膀胱的收缩行为具有双重作用。最近有人提出内源性GABA在该器官中起神经调节作用。我们的数据表明,在逼尿肌神经源性激活的早期阶段(排尿反射),GABA可能会短暂增强兴奋性神经传递,随后对收缩性产生更持久的抑制。

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