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Post- and prejunctional consequences of ecto-ATPase inhibition: electrical and contractile studies in guinea-pig vas deferens

机译:胞外ATP酶抑制的结后和结前后果:豚鼠输精管的电和收缩研究

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摘要

At sites of purinergic neurotransmission, synaptic ecto-ATPase is believed to limit the actions of ATP following its neural release. However, details of the modulation by this enzyme of the ATP-mediated conductance change and the possible mechanisms mediating this modulation remain unelucidated. We have addressed these issues by studying the effect of ARL 67156, a selective ecto-ATPase inhibitor, on ATP-mediated electrical and contractile activity in the sympathetically innervated guinea-pig vas deferens. ARL 67156 at 100 μm significantly potentiated the amplitude of spontaneous excitatory junction potentials (SEJPs) by 81.1% (P < 0.01) and prolonged their time courses (rise time by 49.7%, decay time constant by 38.2%; P < 0.01). Moreover, the frequency of occurrence of SEJPs was strikingly increased (from 0.28 ± 0.13 to 0.90 ± 0.26 Hz; P < 0.01), indicating an additional, primarily presynaptic, effect of ecto-ATPase inhibition. The frequency of occurrence of discrete events (DEs), which represent nerve stimulation-evoked quantal release of neurotransmitter, was also increased (∼6-fold; P < 0.01), along with the appearance of DEs at previously ‘silent’ latencies. Purinergic contractions of the vas deferens were potentiated significantly (P < 0.01) by ARL 67156; these potentiated contractions were suppressed by the A1 agonist adenosine (P < 0.01) but left unaffected by the A1 antagonist 8-phenyltheophylline (8-PT). Our results indicate (i) that ecto-ATPase activity, in addition to modulating the ATP-mediated postjunctional conductance change, may regulate transmitter release prejunctionally under physiological conditions, and (ii) that the prejunctional regulation may be mediated primarily via presynaptic P2X, rather than A1, receptors.
机译:在嘌呤能神经传递的部位,突触胞外ATP酶被认为会限制ATP在神经释放后的作用。但是,尚不清楚该酶对ATP介导的电导率变化的调节作用以及可能介导这种调节作用的机制的细节。我们通过研究选择性外-ATPase抑制剂ARL 67156对交感神经支配的豚鼠输精管中ATP介导的电和收缩活性的影响,解决了这些问题。 100μm的ARL 67156可显着增强自发性兴奋性连接电位(SEJPs)的幅度达81.1%(P <0.01),并延长其时间进程(上升时间为49.7%,衰减时间常数为38.2%; P <0.01)。此外,SEJPs的发生频率显着增加(从0.28±0.13到0.90±0.26 Hz; P <0.01),表明胞外ATPase抑制具有额外的,主要是突触前的作用。代表神经刺激引起的神经递质定量释放的离散事件(DEs)的发生频率也增加了(〜6倍; P <0.01),并且在以前的“沉默”潜伏期出现了DEs。 ARL 67156可显着增强输精管的嘌呤能收缩(P <0.01)。这些增强的收缩被A1激动剂腺苷抑制(P <0.01),但不受A1拮抗剂8-苯基茶碱(8-PT)的影响。我们的结果表明(i)胞外ATPase活性除了调节ATP介导的结后电导率变化外,还可以在生理条件下预先调节结缔组织的释放,并且(ii)结前的调节可能主要通过突触前P2X介导,而不是比A1受体

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