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前列环素类似物增强和抑制豚鼠输精管场刺激反应的机制。

The mechanisms of enhancement and inhibition of field stimulation responses of guinea-pig vas deferens by prostacyclin analogues.

作者信息

Tam F S, Chan K, Borreau J P, Jones R L

机构信息

Department of Pharmacology, Faculty of Medicine, Chinese University of Hong Kong, Shatin.

出版信息

Br J Pharmacol. 1997 Aug;121(7):1413-21. doi: 10.1038/sj.bjp.0701275.

Abstract
  1. In the guinea-pig isolated vas deferens preparation bathed in Tyrode's solution, the prostacyclin analogues, cicaprost, TEI-9063, iloprost, taprostene and benzodioxane-prostacyclin, enhanced twitch responses to submaximal electrical field stimulation (20%-EFS). The high potency of cicaprost (EC150 = 1.3 nM) and the relative potencies of the analogues (equi-effective molar ratios = 1.0, 0.85, 1.6, 17 and 82, respectively) suggest the involvement of a prostacyclin (IP-) receptor. 2. Maximum enhancement induced by cicaprost in 2.5 mM K+ Krebs-Henseleit solution was similar to that in Tyrode solution (2.7 mM K+), but was progressively reduced as the K+ concentration was increased to 3.9, 5.9 and 11.9 mM. There was also a greater tendency for the other prostacyclin analogues to inhibit EFS responses in 5.9 mM standard K+ Krebs-Henseleit solution; this may be attributed to their agonist actions on presynaptic EP3-receptors resulting in inhibition of transmitter release. 3. The EFS enhancing action of cicaprost was not affected by the alpha1-adrenoceptor antagonist prazosin (100 and 1000 nM). Cicaprost (20 and 200 nM) did not affect contractile responses of the vas deferens to either ATP (5 microM) or alpha,beta-methylene ATP (1 microM) in the presence of tetrodotoxin (TTX, 100 nM). In addition, enhancement by cicaprost of responses to higher concentrations of ATP (30 and 300 microM) in the absence of TTX, as shown previously by others, was not seen. Prostaglandin E2 (PGE2, 10 nM) and another prostacyclin analogue TEI-3356 (20 nM) enhanced purinoceptor agonist responses. Unexpectedly, TTX (0.1 and 1 microM) partially inhibited contractions elicited by 10-1000 microM ATP; contractions elicited by 1-3 microM ATP were unaffected. Further studies are required to establish whether a pre- or post-synaptic mechanism is involved. 4. In a separate series of experiments, cicaprost (5-250 nM), TEI-9063 (3-300 nM), 4-aminopyridine (10-100 microM) and tetraethylammonium (100-1000 microM) enhanced both 20%-EFS responses and the accompanying overflow of noradrenaline to a similar extent. In further experiments with the EP1-receptor antagonist AH 6809, TEI-3356 (1.0-100 nM) and the EP3-receptor agonist, sulprostone (0.1-1.0 nM) inhibited both maximal EFS responses and noradrenaline overflow, thus confirming previous reports of the high activity of TEI-3356 at the EP3-receptor. Cicaprost had no significant effect on noradrenaline overflow at 10 and 100 nM, but produced a modest inhibition at 640 nM. 5. In conclusion, our studies show that prostacyclin analogues (particularly TEI-3356) can inhibit EFS responses of the guinea-pig vas deferens by acting as agonists at presynaptic EP3-receptors. Prostacyclin analogues (particularly cicaprost and TEI-9063) can also enhance EFS responses through activation of IP-receptors. The mechanism of the enhancement has not been rigorously established but from our results we favour a presynaptic action to increase transmitter release.
摘要
  1. 在浸泡于台氏液中的豚鼠离体输精管标本中,前列环素类似物西卡前列素、TEI - 9063、伊洛前列素、他普前列素和苯并二氧杂环戊烯 - 前列环素可增强对次最大电场刺激(20% - EFS)的抽搐反应。西卡前列素的高效能(EC150 = 1.3 nM)以及各类似物的相对效能(等效摩尔比分别为1.0、0.85、1.6、17和82)提示前列环素(IP -)受体参与其中。2. 西卡前列素在2.5 mM K⁺的克雷布斯 - 亨泽莱特溶液中诱导的最大增强作用与在台氏液(2.7 mM K⁺)中相似,但随着K⁺浓度增加至3.9、5.9和11.9 mM,增强作用逐渐减弱。在5.9 mM标准K⁺的克雷布斯 - 亨泽莱特溶液中,其他前列环素类似物也更倾向于抑制EFS反应;这可能归因于它们对突触前EP3受体的激动作用,导致递质释放受到抑制。3. 西卡前列素的EFS增强作用不受α1 - 肾上腺素能受体拮抗剂哌唑嗪(100和1000 nM)影响。在存在河豚毒素(TTX,100 nM)的情况下,西卡前列素(20和200 nM)不影响输精管对ATP(5 μM)或α,β - 亚甲基ATP(1 μM)的收缩反应。此外,如之前他人所表明的,在不存在TTX时,西卡前列素对较高浓度ATP(30和300 μM)反应的增强作用未被观察到。前列腺素E2(PGE2,10 nM)和另一种前列环素类似物TEI - 3356(20 nM)增强嘌呤受体激动剂反应。出乎意料的是,TTX(0.1和1 μM)部分抑制由10 - 1000 μM ATP引发的收缩;由1 - 3 μM ATP引发的收缩不受影响。需要进一步研究以确定是突触前还是突触后机制参与其中。4. 在另一系列实验中,西卡前列素(5 - 250 nM)、TEI - 9063(3 - 300 nM)、4 - 氨基吡啶(10 - 100 μM)和四乙铵(100 - 1000 μM)在相似程度上增强20% - EFS反应以及伴随的去甲肾上腺素溢出。在使用EP1受体拮抗剂AH 6809的进一步实验中,TEI - 3356(1.0 - 100 nM)和EP3受体激动剂舒前列素(0.1 - 1.0 nM)抑制最大EFS反应和去甲肾上腺素溢出,从而证实了之前关于TEI - 3356在EP3受体处具有高活性的报道。西卡前列素在10和100 nM时对去甲肾上腺素溢出无显著影响,但在640 nM时产生适度抑制。5. 总之,我们的研究表明前列环素类似物(尤其是TEI - 3356)可通过作为突触前EP3受体的激动剂来抑制豚鼠输精管的EFS反应。前列环素类似物(尤其是西卡前列素和TEI - 9063)也可通过激活IP受体增强EFS反应。增强作用的机制尚未严格确定,但从我们的结果来看,我们倾向于一种突触前作用以增加递质释放。

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