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Action potentials and release of neurohypophysial hormones in vitro

机译:动作电位和神经下垂激素的释放

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摘要

1. Isolated rat neurohypophyses were studied in vitro and the hormones released on electrical stimulation of the pituitary stalk or on exposure to excess potassium were estimated by a milk-ejection assay.2. The stalk was stimulated with trains of 500 stimuli, or multiples thereof, applied at different frequencies. Below frequencies of ca. 35 c/s, hormone release was found to depend on the total number of stimuli applied as well as on the frequency of stimulation. Above ca. 35 c/s, identical numbers of stimuli were progressively less effective as the frequency of stimulation was increased, and the dependence of the hormone output on the total number of stimuli was less apparent.3. The amplitude of the compound action potential recorded from the neurohypophysis following electrical stimulation of the stalk was found to decrease as a function of the frequency of stimulation. Stimulation at 50 c/s reduced its amplitude about sevenfold within 30 sec.4. The addition of tetrodotoxin (TTX) to the incubation media abolished the compound action potential recorded from the neural lobe as well as the release of hormones evoked by electrical stimulation. Resting release, however, was unaffected by TTX.5. In TTX-treated neural lobes, excess potassium was still effective in eliciting graded secretory responses. This indicates the independence of the release process from the action potential generating mechanism and suggests that TTX-paralysed preparations represent a useful model for the study of hormone release in the absence of conducted action potentials.6. The release of hormones from the neurohypophysis and the release of neurotransmitters at chemical synapses both depend on the entry of calcium into the nerve terminals following their depolarization by invading action potentials. In both systems, experimental separation of the release mechanism can be achieved by the use of TTX. These and other parallels suggest that the release process is similar.
机译:1.对离体大鼠的神经垂体进行了体外研究,并通过乳汁喷射法评估了垂体柄电刺激或暴露于过量钾时释放的激素。用以不同频率施加的500个刺激或其倍数的火车刺激茎。低于ca的频率。在35 c / s下,发现激素释放取决于所施加刺激的总数以及刺激的频率。以上。 35 c / s时,随着刺激频率的增加,相同数量的刺激效果逐渐减弱,激素输出量对刺激总数的依赖性降低。3。发现在对茎进行电刺激后,从神经下垂体记录的复合动作电位的幅度随刺激频率而降低。 50 c / s的刺激在30秒内将其幅度降低了约7倍4。向培养液中添加河豚毒素(TTX)消除了从神经叶记录的复合动作电位,并消除了电刺激诱发的激素释放。其余版本不受TTX.5的影响。在经TTX处理的​​神经叶中,过量的钾仍可有效引起分级分泌反应。这表明释放过程与动作电位产生机制的独立性,并暗示TTX麻痹的制剂代表了在没有传导动作电位的情况下研究激素释放的有用模型。6。从神经垂体释放激素和在化学突触中释放神经递质都取决于钙通过其侵入动作电位去极化后进入神经末梢。在这两个系统中,释放机理的实验分离都可以通过使用TTX来实现。这些和其他类似之处表明释放过程是相似的。

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