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Role of ganglionic cotransmission in sympathetic control of the isolated bullfrog aorta.

机译:神经节共传递在离体牛蛙主动脉交感神经控制中的作用。

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摘要

1. The relation between preganglionic activity and arterial tone was studied in preparations of bullfrog lumbar sympathetic ganglia 7-10 and the dorsal aorta. 2. Two or more stimuli evoked contractions when applied to the preganglionic C, but not the B pathway. Contractions were blocked when transmission in ganglia 9 and 10 was disrupted by cutting the sympathetic chain or adding (+)-tubocurarine. Contractions were antagonized by postganglionic action of guanethidine, but not by phentolamine or suramin. 3. Aortic responses to short trains (10-100 stimuli) were half-maximal at 0.3-0.5 Hz, saturated near 1 Hz and had a minimum latency of 8.9 s. By contrast, responses to 300 stimuli were half-maximal at 1 Hz and became 2.5-fold larger at 10 Hz. 4. Exogenous luteinizing hormone releasing hormone (LHRH) potentiated preganglionically evoked contractions. Endogenous LHRH mediated contractions evoked by 10 Hz stimulation in (+)-tubocurarine. These responses had a longer latency than in normal Ringer solution and were blocked by [D-pGlu1, D-Phe2, D-Trp3.6]-LHRH. The LHRH antagonist did not alter contractions evoked by continuous stimulation in normal Ringer solution or by bursts of stimuli in hexamethonium. 5. Exogenous neuropeptide Y (NPY) potentiated neurogenic contractions and responses to adrenaline. Benextramine blocked contractions produced by nerve stimulation, adrenaline and NPY, but not ATP. 6. The results show that contractions of the isolated aorta are tuned to physiological frequencies of activity in sympathetic C neurones. Peptidergic cotransmission in the ganglia can increase arterial tension, but not during synchronous activation of primary nicotinic synapses. It is suggested that the physiological role of LHRH arises from interactions with subthreshold nicotinic EPSPs and that postganglionic release of NPY shifts frequency tuning of the circuit during prolonged activity.
机译:1.研究了牛蛙腰交感神经节7-10和背主动脉制剂中神经节前活性与动脉张力之间的关系。 2.当施加至神经节前C而不是B途径时,会引起两个或多个刺激诱发的收缩。当通过切断交感神经链或添加(+)-微管尿素破坏神经节9和10的传输时,收缩被阻止。胍乙啶的节后作用可拮抗收缩作用,而苯妥拉明或苏拉明则不能拮抗收缩作用。 3.对短链(10-100个刺激)的主动脉反应在0.3-0.5 Hz处最大,在1 Hz附近饱和,最小潜伏期为8.9 s。相比之下,对300个刺激的响应在1 Hz时为最大值的一半,而在10 Hz时变为2.5倍。 4.外源性黄体生成激素释放激素(LHRH)增强节前性诱发的收缩。内源性LHRH介导的收缩由(+)-微管尿素中的10 Hz刺激引起。这些响应的延迟时间比正常的Ringer解决方案更长,并且被[D-pGlu1,D-Phe2,D-Trp3.6] -LHRH阻止。 LHRH拮抗剂不会改变在正常林格溶液中连续刺激或在六甲铵中爆发的刺激引起的收缩。 5.外源性神经肽Y(NPY)增强神经源性收缩和对肾上腺素的反应。 Benextramine阻断神经刺激,肾上腺素和NPY产生的收缩,但不阻断ATP。 6.结果表明,离体主动脉的收缩被调节到交感神经C神经元的生理活动频率。神经节中的肽能共传递可增加动脉张力,但不能在初级烟碱突触的同步激活过程中增加。提示LHRH的生理作用来自与亚阈值烟碱型EPSP的相互作用,而神经节后释放的NPY在长时间活动期间会改变电路的频率调谐。

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