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首页> 外文期刊>Journal of pharmacological sciences. >Neurotoxin A2NTX Blocks Fast Inhibitory and Excitatory Transmitter Release From Presynaptic Terminals.
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Neurotoxin A2NTX Blocks Fast Inhibitory and Excitatory Transmitter Release From Presynaptic Terminals.

机译:Neurotoxin A2NTX阻断突触前末端的快速抑制和兴奋性递质释放。

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Our recent study showed a possibility that newly developed A2 type botulinum toxin (A2NTX) inhibits both spontaneous and evoked transmitter release from inhibitory (glycinergic or GABAergic) and excitatory (glutamatergic) nerve terminals using rat spinal sacral dorsal commissural nucleus neurons. In the present study, to determine the modulatory effect of A2NTX on glycinergic and glutamatergic release probabilities, we tested the effects of A2NTX on a single inhibitory or excitatory nerve ending adherent to a dissociated neuron that was activated by paired-pulse stimuli by using the focal electrical stimulation technique. The results of the present paired-pulse experiments showed clearly that A2NTX enhanced paired-pulse facilitation of evoked glycinergic inhibitory postsynaptic currents and glutamatergic excitatory postsynaptic currents and increased the failure rate (Rf) of the first postsynaptic currents (P(1)) and both the responses. These effects of A2NTX on the amplitude and Rf of the P(1) and the second postsynaptic currents (P(2)) and paired-pulse ratio were rescued by application of 4-aminophthalimide. In summary, the present results showed that A2NTX acts purely presynaptically and inhibits the release machinery of transmitters such as glycine and glutamate, and the transmitter release machinery became less sensitive to intracellular free-Ca(2+) in A2NTX poisoned nerve terminals.
机译:我们最近的研究表明,新开发的A2型肉毒杆菌毒素(A2NTX)可能会利用大鼠的骨背侧连合神经元神经元抑制抑制性(甘氨酸能或GABA能)和兴奋性(谷氨酸能)神经末梢的自发性和诱发性递质释放。在本研究中,为了确定A2NTX对甘氨酸能和谷氨酸能释放可能性的调节作用,我们通过使用聚焦点测试了A2NTX对粘附于解离的神经元的单个抑制性神经兴奋性神经元的作用,该神经元被成对脉冲刺激激活电刺激技术。本配对脉冲实验的结果清楚地表明,A2NTX增强了诱发诱发的甘氨酸能抑制突触后突触电流和谷氨酸能兴奋性突触后突触电流的配对脉冲易化性,并增加了第一个突触突触后电流(P(1))的失败率(Rf)反应。通过应用4-氨基邻苯二甲酰亚胺,可以挽救A2NTX对P(1)和第二突触后电流(P(2))的幅度和Rf以及配对脉冲比的这些影响。总而言之,目前的结果表明,A2NTX纯粹是先突触地起作用,抑制甘氨酸和谷氨酸等递质的释放机制,并且递质释放机制对A2NTX中毒的神经末梢中的细胞内游离Ca(2+)的敏感性降低。

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