Miró-Bernié N, Sancho-Bielsa F J, López-García C, Pérez-Clausell J
Departament de Biologia Cel.lular, Universitat de Barcelona, Av. Diagonal 645, 08028 Barcelona, Spain.
J Neurosci Methods. 2003 Aug 15;127(2):199-209. doi: 10.1016/s0165-0270(03)00146-8.
Zinc is found in synaptic vesicles in a large number of glutamatergic systems. Its involvement in neurotransmission and neurological disorders has been suggested. There are methods for tracing these circuits, but they do not fill the dendritic tree. In this study, extracellular selenite injections in vivo were combined with intracellular injection of fluorochromes in fixed tissue to reveal the morphology of these zinc-rich neurones. Intraperitoneal and intracerebral injections of sodium selenite alone or intracerebral injections of selenite combined with bisbenzimide were made in the visual cortex of the rat in order to locate the somata of zinc-rich neurones. After 24 h of retrograde transport, animals were killed and fluorescent markers were injected intracellularly into fixed slices to show neuronal morphology: (a) Lucifer Yellow (LY) followed by biocytin, (b) LY coupled to biocytin or (c) micro-ruby (MR) (dextranamines bound to rhodamine and biotin). Double-labelled somata (selenite+fluorochrome) were plotted. Details of the dendritic morphology were then revealed by incubation in avidin-biotin complex and development in 3,3'-diaminobenzidine and H(2)O(2). Camera lucida drawings showed that zinc-rich neurones in layers II-III involved in cortico-cortical visual projections were typical pyramidal neurones. This technique is noteworthy for its analysis of the morphology (and connections) of zinc-rich neurones.
锌存在于大量谷氨酸能系统的突触小泡中。有人提出锌参与神经传递和神经疾病。有追踪这些回路的方法,但它们无法填满树突树。在本研究中,将体内细胞外注射亚硒酸盐与固定组织中细胞内注射荧光染料相结合,以揭示这些富含锌神经元的形态。在大鼠视觉皮层中单独进行腹腔和脑内注射亚硒酸钠,或脑内注射亚硒酸盐与双苯甲酰亚胺相结合,以定位富含锌神经元的胞体。逆行运输24小时后,处死动物,并将荧光标记物细胞内注射到固定切片中以显示神经元形态:(a) 荧光黄(LY)后接生物素,(b) 与生物素偶联的LY,或 (c) 微红宝石(MR)(与罗丹明和生物素结合的葡聚糖胺)。绘制双标记的胞体(亚硒酸盐+荧光染料)。然后通过抗生物素蛋白-生物素复合物孵育并用3,3'-二氨基联苯胺和H₂O₂显色来揭示树突形态的细节。明场绘图显示,参与皮质-皮质视觉投射的II-III层中富含锌的神经元是典型的锥体神经元。这项技术因其对富含锌神经元的形态(和连接)分析而值得关注。