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Neurotransmitters and peptides: whispered secrets and public announcements.

机译:神经递质和多肽:低语的秘密和公开声明。

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The magnocellular oxytocin and vasopressin neurones of the hypothalamus are now understood in exceptional detail. Extensive quantitative details from many independent sources are available describing the electrical activity of the neurones in diverse circumstances, the subcellular localization of vesicles, and rates of hormone secretion from nerve endings into the blood and from dendrites into the brain. These data enable the relationship of electrical (spike) activity to vesicle exocytosis to be inferred with some precision. Such calculations lead to the conclusion that exocytosis of peptide-containing vesicles is a relatively rare event even in this vesicle-dense system. At any given release site in the neurohypophysis, it seems that several hundred spikes are needed on average to release a single vesicle. Release from compartments within the brain seems also to be very rare, making it implausible that peptides can act in a temporally precise, anatomically specific manner. However, very large amounts of peptide are released by these infrequent events, consistent with their likely role as neurohormonal messengers.
机译:下丘脑的肥大细胞催产素和加压素神经元现已被特别了解。可以从许多独立来源获得大量的定量细节,这些细节描述了神经元在各种情况下的电活动,囊泡的亚细胞定位以及从神经末梢到血液以及从树突到大脑的激素分泌速率。这些数据使得能够以一定的精确度推断出电(突波)活性与囊泡胞吐作用的关系。这样的计算得出这样的结论:即使在该囊泡密集系统中,含肽囊泡的胞吐作用也是相对罕见的事件。在神经垂体的任何给定释放部位,似乎平均需要数百个峰值才能释放单个囊泡。从大脑内的隔室中释放似乎也是非常罕见的,这使得肽以时间上精确的,解剖学上特定的方式起作用是难以置信的。但是,这些罕见事件会释放大量肽,这与它们作为神经激素信使的作用相一致。

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