Brown Colin H, Ruan Ming, Scott Victoria, Tobin Vicky A, Ludwig Mike
Centre for Neuroendocrinology and Department of Physiology, University of Otago, Dunedin, New Zealand.
Prog Brain Res. 2008;170:219-28. doi: 10.1016/S0079-6123(08)00419-6.
Classically, neuropeptide release occurs from axon terminals to influence post-synaptic neurons. However, it has become increasingly clear that many neurons in the central nervous system also release neuropeptide from their somata and dendrites. This somato-dendritic neuropeptide release can have many functions, amongst which is feedback modulation of activity. In addition, most central neurons also co-express other neurotransmitters/neuromodulators alongside their principal neurotransmitter, yet the function of these co-expressed factors is largely unknown. With regard to the function of somato-dendritic neuropeptide release, hypothalamic vasopressin neurons are amongst the best understood neurons in the central nervous system. Vasopressin neurons co-express a number of other neuropeptides including apelin, dynorphin and galanin as well as the purine, adenosine triphosphate. In addition to factors co-released during exocytosis, vasopressin neurons also generate nitric oxide. Each of these factors has been demonstrated to influence the activity of vasopressin neurons. For at least some of these factors, modulation of the activity of vasopressin neurons is activity dependent; suggesting that autocrine feedback regulation of activity might be an important role for somato-dendritic release of neuromodulators across the central nervous system.
传统上,神经肽从轴突终末释放,以影响突触后神经元。然而,越来越清楚的是,中枢神经系统中的许多神经元也从其胞体和树突释放神经肽。这种胞体-树突神经肽释放具有多种功能,其中之一是对活动的反馈调节。此外,大多数中枢神经元除了主要神经递质外,还共同表达其他神经递质/神经调质,然而这些共同表达因子的功能在很大程度上尚不清楚。关于胞体-树突神经肽释放的功能,下丘脑加压素神经元是中枢神经系统中了解得最好的神经元之一。加压素神经元共同表达多种其他神经肽,包括apelin、强啡肽和甘丙肽以及嘌呤三磷酸腺苷。除了在胞吐过程中共同释放的因子外,加压素神经元还产生一氧化氮。这些因子中的每一种都已被证明会影响加压素神经元的活动。对于这些因子中的至少一些,加压素神经元活动的调节是依赖于活动的;这表明自分泌反馈调节活动可能是中枢神经系统中神经调质胞体-树突释放的一个重要作用。