Miceli D, Repérant J, Marchand L, Rio J P
Laboratoire de Neuropsychologie Expérimentale, Université du Québec, Trois-Rivières, Canada.
Brain Res. 1993 Jan 22;601(1-2):289-98. doi: 10.1016/0006-8993(93)91723-6.
The transneuronal labeling properties of the fluorescent dye Rhodamine beta-isothiocyanate (RITC) were investigated in the pigeon following the intraocular injection of the tracer either alone or in combination with kainic acid (RITC/KA). The RITC was transported bidirectionally from the eye producing both orthograde axonal and terminal labeling of the primary visual system (PVS) and retrograde labeling of the centrifugal visual system (CVS) comprising the n. isthmo-opticus (NIO) and associated ectopic neurons (EN) as well as the tractus isthmo-opticus (TIO). In addition, RITC-positive cell bodies were identified in layers 9/10 of the optic tectum, n. isthmi parvocellularis (Ipc) and the hyperstriatum accessorium (HA) subdivision of the telencephalic visual Wulst. In the RITC/KA experiments, the orthograde transport of the dye within the PVS was selectively suppressed and this coincided with the absence of somatic labeling in n. Ipc and HA. The results are explained in terms of transneuronal transport of RITC, involving the terminal uptake and subsequent retrograde axonal transport of the tracer within second-order neurons in n. Ipc and HA which project to the PVS and in tectal layers 9/10 projecting to the CVS. Moreover, the transneuronal transport of RITC, as demonstrated using the present experimental conditions, appears to be very specific and only labeled distant cell populations known to project to either the PVS or CVS.
在鸽子眼内注射荧光染料异硫氰酸罗丹明(RITC)单独或与 kainic 酸(RITC/KA)联合后,研究了其跨神经元标记特性。RITC 从眼睛双向运输,产生初级视觉系统(PVS)的顺行轴突和终末标记以及离心视觉系统(CVS)的逆行标记,离心视觉系统包括峡视核(NIO)和相关的异位神经元(EN)以及峡视束(TIO)。此外,在视顶盖的 9/10 层、峡核小细胞部(Ipc)和端脑视觉顶叶的副纹状体(HA)亚区中鉴定出 RITC 阳性细胞体。在 RITC/KA 实验中,染料在 PVS 内的顺行运输被选择性抑制,这与 Ipc 核和 HA 中缺乏体细胞标记相吻合。结果用 RITC 的跨神经元运输来解释,涉及示踪剂在投射到 PVS 的 Ipc 核和 HA 中的二级神经元内的终末摄取和随后的逆行轴突运输,以及投射到 CVS 的顶盖 9/10 层。此外,使用本实验条件证明的 RITC 的跨神经元运输似乎非常特异,仅标记已知投射到 PVS 或 CVS 的远处细胞群。