Moriya-Ito Keiko, Endoh Kentaroh, Ichikawa Masumi
Laboratory of Anatomy and Cell Biology, Department of Neuroscience Basic Technology, Tokyo Metropolitan Institute for Neuroscience, 2-6 Musashidai, Fuchu, Tokyo 183-8526, Japan.
Neurosci Lett. 2009 Feb 13;451(1):20-4. doi: 10.1016/j.neulet.2008.12.009. Epub 2008 Dec 16.
To investigate the morphological changes of accessory olfactory bulb (AOB) neurons arising from pheromonal signals, a coculture system of AOB neurons and vomeronasal (VN) neurons had been established. Our previous study indicates that under coculture condition, the density of dendritic spines of an AOB neuron is less and the individual spine-head volume is larger than those under monoculture condition. In this study, to determine whether these differences in the dendrites of AOB neurons reflect the differences in synapse formation and synaptic properties, we observed these cultured cells by electron microscopy. Various synapses were observed under each culture condition. Synapses were classified on the basis of their postsynaptic structure and the size of postsynaptic density (PSD) was measured. Under the coculture condition with VN neurons, synapses on dendritic spines, which formed between AOB neurons, were observed frequently. In contrast, many synapses were formed on dendritic shafts under monoculture condition. The PSD of asymmetrical synapses on the spines under coculture condition was larger than that under monoculture condition. Moreover, some dendrodendritic reciprocal synapses were found only in coculture. We confirmed synapse formation between VN axons and AOB dendrites by immunohistochemical electron microscopy; thus, the characteristics of synapses between AOB neurons are considered to be modified by the synaptic contacts with VN axons.
为了研究由信息素信号引起的副嗅球(AOB)神经元的形态变化,建立了AOB神经元与犁鼻器(VN)神经元的共培养系统。我们之前的研究表明,在共培养条件下,AOB神经元树突棘的密度较低,单个棘头体积比单培养条件下的大。在本研究中,为了确定AOB神经元树突的这些差异是否反映了突触形成和突触特性的差异,我们通过电子显微镜观察了这些培养的细胞。在每种培养条件下都观察到了各种突触。根据突触后结构对突触进行分类,并测量突触后致密部(PSD)的大小。在与VN神经元共培养的条件下,经常观察到AOB神经元之间在树突棘上形成的突触。相比之下,在单培养条件下,许多突触形成于树突干上。共培养条件下棘上不对称突触的PSD大于单培养条件下的。此外,仅在共培养中发现了一些树突-树突相互突触。我们通过免疫组织化学电子显微镜证实了VN轴突与AOB树突之间的突触形成;因此,AOB神经元之间突触的特征被认为会因与VN轴突的突触接触而改变。