首页> 外文期刊>Experimental Biology and Medicine: Journal of the Society for Experimental Biology and Medicine >Hormonal and neurotransmitter roles for angiotensin in the regulation of central autonomic function.
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Hormonal and neurotransmitter roles for angiotensin in the regulation of central autonomic function.

机译:血管紧张素在中枢植物神经功能调节中的激素和神经递质作用。

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摘要

In this review we present the case for both hormonal and neurotransmitter actions of angiotensin II (ANG) in the control of neuronal excitability in a simple neural pathway involved in central autonomic regulation. We will present both single-cell and whole-animal data highlighting hormonal roles for ANG in controlling the excitability of subfornical organ (SFO) neurons. More controversially we will also present the case for a neurotransmitter role for ANG in SFO neurons in controlling the excitability of identified neurons in the paraventricular nucleus (PVN) of the hypothalamus. In this review we highlight the similarities between the actions of ANG on these two populations of neurons in an attempt to emphasize that whether we call such actions "hormonal" or "neurotransmitter" is largely semantic. In fact such definitions only refer to the method of delivery of the chemical messenger, in this case ANG, to its cellular site of action, in this case the AT1 receptor. We also described in this review some novel concepts that may underlie synthesis, metabolic processing, and co-transmitter actions of ANG in this pathway. We hope that such suggestions may lead ultimately to the development of broader guiding principles to enhance our understanding of the multiplicity of physiological uses for single chemical messengers.
机译:在这篇综述中,我们介绍了血管紧张素II(ANG)在控制中央自主神经调节的简单神经通路中神经元兴奋性控制中的激素和神经递质作用。我们将展示单细胞和整个动物的数据,突出显示ANG在控制下穹organ器官(SFO)神经元兴奋性中的激素作用。更有争议的是,我们还将介绍SFO神经元中ANG在控制下丘脑室旁核(PVN)中神经元兴奋性中的神经递质作用。在这篇综述中,我们强调了ANG对这两个神经元群体的作用之间的相似性,以强调我们将这种作用称为“激素”还是“神经递质”在很大程度上是语义上的。实际上,这样的定义仅涉及将化学信使(在这种情况下为ANG)递送至其细胞作用位点(在这种情况下为AT1受体)的方法。我们还在本综述中描述了一些新概念,这些概念可能是该途径中ANG的合成,代谢过程和共递质作用的基础。我们希望这些建议最终可以导致更广泛的指导原则的发展,以加深我们对单个化学信使的多种生理用途的理解。

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