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Facilitation and depression of ATP and noradrenaline release from sympathetic nerves of rat tail artery

机译:促进和抑制大鼠尾动脉交感神经释放ATP和去甲肾上腺素

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摘要

Excitatory junction currents (EJCs) were used to measure ATP release; noradrenaline (NA) oxidation currents and fractional overflow of labelled NA, [3H]NA, were used to monitor the release of endogenous and exogenous NA, respectively, from post-ganglionic sympathetic nerves of rat tail artery.During nerve stimulation with 100 pulses at 5-20 Hz the EJCs initially grew in size (maximally by 23%, at 2–10 Hz), and then depressed, maximally by 68% at 20 Hz.The peak amplitude of NA oxidation currents in response to nerve stimulation with 100 pulses at 2–20 Hz grew in size with frequency, while the area was independent of frequency and roughly constant.The size of the NA oxidation currents evoked by nerve stimulation with 4–100 pulses at 20 Hz grew linearly with train length between pulses 4–16. Between pulses 20–100 there was a train length-dependent depression of the signal.Fractional overflow of [3H]NA in response to nerve stimulation with 5–100 pulses at 20 Hz behaved similarly to the EJCs. It initially grew roughly linearly between pulses 5–25, and then showed a dramatic depression similar to that of the EJCs.The α2-adrenoceptor antagonists rauwolscine and yohimbine increased the overflow of [3H]NA and the amplitude of NA oxidation currents, but not that of the EJCs.It is concluded that during high-frequency stimulation (i) the release of ATP and NA is first briefly facilitated then markedly depressed, (ii) facilitation and depression of the two transmitters are similar in magnitude and time course, and (iii) α2-adrenoceptor antagonists differentially modify EJCs and the NA signals. The results obtained in the absence of drugs are compatible with the hypothesis that ATP and NA are released in parallel, while the effects of α2-adrenoceptor antagonists seem to suggest dissociated release.
机译:兴奋性结电流(EJC)用于测量ATP释放;去甲肾上腺素(NA)氧化电流和标记的NA [3H] NA的分数溢流分别用于监测大鼠尾动脉神经节后交感神经中内源性和外源性NA的释放。在100脉冲的神经刺激下EJC的大小在5-20 Hz时开始增大(在2-10 Hz时最大增加23%),然后在20 Hz时逐渐降低,最大68%。NA氧化电流的峰值响应100个脉冲刺激神经在2–20 Hz时,其大小随频率增加,而面积与频率无关,并且大致恒定。在20 Hz时,由4–100个脉冲刺激的神经刺激引起的NA氧化电流的大小随脉冲4–2之间的火车长度线性增长。 16。在20–100脉冲之间,信号的长度依赖于序列的下降。[3H] NA的分数溢出响应20 Hz的5–100脉冲对神经的刺激,其行为与EJC相似。它最初在5-25个脉冲之间大致呈线性增长,然后表现出与EJCs相似的剧烈下降。α2-肾上腺素受体拮抗剂劳乌斯金和育亨宾增加了[3H] NA的溢出和NA氧化电流的幅度,但没有增加结论是在高频刺激过程中(i)首先短暂促进ATP和NA的释放,然后明显抑制;(ii)两个发射器的促进和抑制在幅度和时间过程上相似,并且(iii)α2-肾上腺素能受体拮抗剂差异性修饰EJC和NA信号。在没有药物的情况下获得的结果与ATP和NA平行释放的假说相符,而α2-肾上腺素受体拮抗剂的作用似乎暗示了游离释放。

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