Huh Carey Y L, Danik Marc, Manseau Frédéric, Trudeau Louis-Eric, Williams Sylvain
Neuroscience Division, Douglas Mental Health University Institute, McGill University, Montréal, Québec, Canada H4H 1R3.
J Neurosci. 2008 Feb 6;28(6):1404-9. doi: 10.1523/JNEUROSCI.4851-07.2008.
Basal forebrain neurons play an important role in memory and attention. In addition to cholinergic and GABAergic neurons, glutamatergic neurons and neurons that can corelease acetylcholine and glutamate have recently been described in the basal forebrain. Although it is well known that nerve growth factor (NGF) promotes synaptic function of cholinergic basal forebrain neurons, how NGF affects the newly identified basal forebrain neurons remains undetermined. Here, we examined the effects of NGF on synaptic transmission of medial septum and diagonal band of Broca (MS-DBB) neurons expressing different neurotransmitter phenotypes. We used MS-DBB neurons from 10- to 13-d-old rats, cultured on astrocytic microislands to promote the development of autaptic connections. Evoked and spontaneous postsynaptic currents were recorded, and neurotransmitters released were characterized pharmacologically. We found that chronic exposure to NGF significantly increased acetylcholine and glutamate release from cholinergic MS-DBB neurons, whereas glutamate and GABA transmission from noncholinergic MS-DBB neurons were not affected by NGF. Interestingly, the NGF-induced increase in neurotransmission was mediated by p75(NTR). These results demonstrate a previously unidentified role of NGF and its receptor p75(NTR); their interactions are crucial for cholinergic and glutamatergic transmission in the septohippocampal pathway.
基底前脑神经元在记忆和注意力方面发挥着重要作用。除了胆碱能和γ-氨基丁酸能神经元外,最近在基底前脑中还发现了谷氨酸能神经元以及能够共同释放乙酰胆碱和谷氨酸的神经元。尽管众所周知神经生长因子(NGF)可促进胆碱能基底前脑神经元的突触功能,但NGF如何影响新发现的基底前脑神经元仍不清楚。在此,我们研究了NGF对表达不同神经递质表型的内侧隔核和布罗卡斜角带(MS-DBB)神经元突触传递的影响。我们使用来自10至13日龄大鼠的MS-DBB神经元,将其培养在星形胶质细胞微岛上以促进自突触连接的发育。记录诱发和自发的突触后电流,并通过药理学方法对释放的神经递质进行表征。我们发现,长期暴露于NGF可显著增加胆碱能MS-DBB神经元中乙酰胆碱和谷氨酸的释放,而非胆碱能MS-DBB神经元的谷氨酸和γ-氨基丁酸传递不受NGF影响。有趣的是,NGF诱导的神经传递增加是由p75(NTR)介导的。这些结果表明了NGF及其受体p75(NTR)以前未被认识的作用;它们之间的相互作用对于海马旁回通路中的胆碱能和谷氨酸能传递至关重要。