Department of Physiology, Georgia Health Sciences University, Augusta, GA 30912, USA.
Auton Neurosci. 2013 Apr;175(1-2):51-60. doi: 10.1016/j.autneu.2012.12.009. Epub 2013 Jan 30.
Maintenance of bodily homeostasis requires concerted interactions between the neuroendocrine and the autonomic nervous systems, which generate adaptive neurohumoral outflows in response to a variety of sensory inputs. Moreover, an exacerbated neurohumoral activation is recognized to be a critical component in numerous disease conditions, including hypertension, heart failure, stress, and the metabolic syndrome. Thus, the study of neurohumoral regulation in the brain is of critical physiological and pathological relevance. Most of the work in the field over the last decades has been centered on elucidating neuronal mechanisms and pathways involved in neurohumoral control. More recently however, it has become increasingly clear that non-neuronal cell types, particularly astrocytes and microglial cells, actively participate in information processing in areas of the brain involved in neuroendocrine and autonomic control. Thus, in this work, we review recent advances in our understanding of neuro-glial interactions within the hypothalamic supraoptic and paraventricular nuclei, and their impact on neurohumoral integration in these nuclei. Major topics reviewed include anatomical and functional properties of the neuro-glial microenvironment, neuron-to-astrocyte signaling, gliotransmitters, and astrocyte regulation of signaling molecules in the extracellular space. We aimed in this review to highlight the importance of neuro-glial bidirectional interactions in information processing within major hypothalamic networks involved in neurohumoral integration.
维持身体内环境稳态需要神经内分泌系统和自主神经系统的协同作用,它们会针对各种感觉输入产生适应性的神经激素流出。此外,神经激素的过度激活被认为是包括高血压、心力衰竭、应激和代谢综合征在内的许多疾病状态的一个关键组成部分。因此,研究大脑中的神经激素调节具有重要的生理和病理意义。在过去几十年的研究中,大多数工作都集中在阐明参与神经激素控制的神经元机制和途径上。然而,最近越来越明显的是,非神经元细胞类型,特别是星形胶质细胞和小胶质细胞,积极参与涉及神经内分泌和自主控制的大脑区域的信息处理。因此,在这项工作中,我们回顾了最近在理解下丘脑视上核和室旁核内神经胶质相互作用方面的进展,以及它们对这些核内神经激素整合的影响。综述的主要内容包括神经胶质微环境的解剖和功能特性、神经元-星形胶质细胞信号传递、神经胶质递质以及星形胶质细胞对细胞外空间中信号分子的调节。我们旨在强调在涉及神经激素整合的主要下丘脑网络内的信息处理中,神经胶质双向相互作用的重要性。