首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Neurons in the dorsal motor nucleus of the vagus nerve are excited by oxytocin in the rat but not in the guinea pig.
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Neurons in the dorsal motor nucleus of the vagus nerve are excited by oxytocin in the rat but not in the guinea pig.

机译:催产素在大鼠中刺激迷走神经背运动核中的神经元,但在豚鼠中则不然。

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摘要

Intracellular recordings were obtained from vagal neurons and their response to oxytocin was investigated in slices from the rat and the guinea pig brainstem. After recording, Lucifer yellow was injected into the cells to verify their localization within the dorsal motor nucleus of the vagus nerve (dmnX). In the rat, virtually all neurons throughout the rostrocaudal extent of the dmnX increased their rate of firing in the presence of 10-1000 nM oxytocin and their membrane depolarized in a reversible concentration-dependent manner. This excitation was probably exerted directly on the impaled cells rather than being synaptically mediated, since it persisted in a low calcium/high magnesium medium or in the presence of tetrodotoxin. These data provide evidence for a direct membrane effect of oxytocin on a defined population of neurons in the rat brain. In the guinea pig, vagal neurons were fired by glutamate but were not excited by oxytocin, even though we detected many more oxytocin-immunoreactive structures in the guinea pig dmnX than in the rat dmnX. Therefore, homologous nuclei in the brains of two closely related mammals differ markedly in the density of oxytocinergic axons they contain. Unexpectedly, the magnitude of the electrophysiological effects of oxytocin on vagal neurons appeared inversely related to the amount of oxytocin-like immunoreactivity present in dmnX.
机译:从迷走神经元获得细胞内记录,并在大鼠和豚鼠脑干的切片中研究它们对催产素的反应。记录后,将路西法黄注射到细胞中以验证其在迷走神经背运动核(dmnX)中的定位。在大鼠中,实际上在dmnX的整个后额尾神经元中,所有神经元在存在10-1000 nM催产素的情况下都提高了放电速度,并且其膜以可逆的浓度依赖性方式去极化。这种刺激可能直接作用于被刺激的细胞,而不是通过突触介导,因为它持续存在于低钙/高镁培养基中或存在河豚毒素中。这些数据提供了催产素对大鼠大脑中特定数量的神经元的直接膜作用的证据。在豚鼠中,尽管我们在豚鼠dmnX中比在大鼠dmnX中发现了更多的催产素免疫反应结构,但谷氨酸激发了迷走神经元,但催产素并未使其兴奋。因此,两个紧密相关的哺乳动物的大脑中的同源核在它们所含的催产素轴突的密度上有显着差异。出乎意料的是,催产素对迷走神经元的电生理作用的大小似乎与dmnX中存在的催产素样免疫反应量成反比。

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