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Release inhibitory receptors activation favours the A2A-adenosine receptor-mediated facilitation of noradrenaline release in isolated rat tail artery

机译:释放抑制受体的激活有利于A2A腺苷受体介导的去甲肾上腺素释放在离体大鼠尾动脉中的促进

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摘要

class="enumerated" style="list-style-type:decimal">Interactions between A2A-adenosine receptors and α2-, A1- and P2- release-inhibitory receptors, on the modulation of noradrenaline release were studied in isolated rat tail artery. Preparations were labelled with [3H]-noradrenaline, superfused with desipramine-containing medium, and stimulated electrically (100 pulses at 5 Hz or 20 pulses at 50 Hz).Blockade of α2-autoreceptors with yohimbine (1 μM) increased tritium overflow elicited by 100 pulses at 5 Hz but not by 20 pulses at 50 Hz.The selective A2A-receptor agonist 2-p-(2-carboxyethyl)phenethylamino-5′-N-ethylcarboxamidoadenosine (CGS 21680; 1 – 100 nM) enhanced tritium overflow elicited by 100 pulses at 5 Hz. Yohimbine prevented the effect of CGS 21680, which was restored by the A1-receptor agonist N6-cyclopentyladenosine (CPA; 100 nM) or by the P2-receptor agonist 2-methylthioadenosine triphosphate (2-MeSATP; 80 μM).CGS 21680 (100 nM) failed to increase tritium overflow elicited by 20 pulses at 50 Hz. The α2-adrenoceptor agonist 5-bromo-6-(2-imidazolin-2-ylamino)-quinoxaline (UK 14304; 30 nM), the A1-receptor agonist CPA (100 nM) or the P2-receptor agonist 2-MeSATP (80 μM) reduced tritium overflow. In the presence of these agonists CGS 21680 elicited a facilitation of tritium overflow.Blockade of potassium channels with tetraethylammonium (TEA; 5 mM) increased tritium overflow elicited by 100 pulses at 5 Hz to values similar to those obtained in the presence of yohimbine but did not prevent the effect of CGS 21680 (100 nM) on tritium overflow.It is concluded that, in isolated rat tail artery, the facilitation of noradrenaline release mediated by A2A-adenosine receptors is favoured by activation of release inhibitory receptors.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 在离体大鼠尾动脉中研究了A2A-腺苷受体与α2-,A1-和P2-释放抑制受体之间的相互作用对去甲肾上腺素释放的调节。用[ 3 H]-去甲肾上腺素标记制剂,并与含去司帕明的培养基融合,并进行电刺激(5 Hz时100脉冲或50 Hz时20脉冲)。 封锁育亨宾(1μm)对α2-自受体的影响增加了increased溢出,在5 100Hz处产生100个脉冲,但在50 Hz处不引起20个脉冲。 选择性A2A受体激动剂2-p-(2-羧乙基)苯乙氨基5'-N-乙基羧酰胺基腺苷(CGS 21680; 1 – 100 nM)通过在5 Hz处产生100个脉冲而增强了overflow的溢流。育亨宾阻止了CGS 21680的作用,这种作用可通过A1受体激动剂N 6 -环戊基腺苷(CPA; 100 nM)或P2受体激动剂2-甲基硫代腺苷三磷酸(2-MeSATP; 80μM)。 CGS 21680(100 nM)未能增加50 Hz 20个脉冲引起的溢出。 α2-肾上腺素受体激动剂5-溴-6-(2-咪唑啉-2-基氨基)-喹喔啉(UK 14304; 30 nM),A1受体激动剂CPA(100 nM)或P2-受体激动剂2-MeSATP( 80μm)减少了overflow的溢出。在存在这些激动剂的情况下,CGS 21680促进了overflow的溢出。 用四乙铵(TEA; 5 mM)封锁钾离子通道,在5 Hz处通过100个脉冲诱发的tri溢出增加到与所获得的值相似的值。结论:在孤立的大鼠尾动脉中,A2A-腺苷介导的去甲肾上腺素释放促进了 受体受释放抑制受体的激活。

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