Deng Jin-Bo, Yu Dong-Ming, Wu Ping, Li Ming-Shan
Institute of Neurobiology, Henan University, Kaifeng 475004, Henan Province, PR China.
Int J Dev Neurosci. 2007 Jun;25(4):251-8. doi: 10.1016/j.ijdevneu.2007.03.002. Epub 2007 Mar 18.
The entorhino-hippocampal pathway is the major excitatory input from neurons of the entorhinal cortex on both ipsilateral and contralateral hippocampus/dentate gyrus. This fiber tract consists of the alvear path, the perforant path and a crossed commissural projection. In this study, the histogenesis and development of the various subsets of the entorhino-hippocampal projection have been investigated. DiI, DiO, Fast Blue tracing and calretinin immunocytochemistry as well as were carried out with pre and postnatal rats at different developmental stages. The alvear path and the commissural pathway start to develop as early as embryonic day E16, while the first perforant afferents reach the stratum lacunosum-moleculare of the hippocampus at E17 and at outer molecular layer of the denate gyrus at postnatal day 2. Retrograde tracing with DiI identifies entorhinal neurons in layer II-IV as the developmental origin of the entorhino-hippocampal pathway. Furthermore, calretinin immunocytochemistry revealed transitory Cajal-Retzius cells in the stratum lacunosum-moleculare of the hippocampus from E16. DiI labeling of entorhinal cortex fibers and combined calretinin-immunocytochemistry reveal a close relationship between Cajal-Retzius cells and entorhinal afferents. This temporal and spatial relationship suggests that Cajal-Retzius cell serves as a guiding cue for entorhinal afferents at early cortical development.
内嗅-海马通路是内嗅皮质神经元向同侧和对侧海马/齿状回发出的主要兴奋性输入。该纤维束由海马槽通路、穿通通路和交叉连合投射组成。在本研究中,对内嗅-海马投射的不同亚群的组织发生和发育进行了研究。使用DiI、DiO、快蓝示踪法和钙视网膜蛋白免疫细胞化学方法,对不同发育阶段的产前和产后大鼠进行了研究。海马槽通路和连合通路早在胚胎第16天就开始发育,而第一批穿通传入纤维在胚胎第17天到达海马的腔隙-分子层,并在出生后第2天到达齿状回的外分子层。用DiI进行逆行示踪确定内嗅皮质第II-IV层的神经元是内嗅-海马通路的发育起源。此外,钙视网膜蛋白免疫细胞化学显示,从胚胎第16天开始,海马腔隙-分子层中存在短暂的卡哈尔-雷茨乌斯细胞。内嗅皮质纤维的DiI标记和钙视网膜蛋白免疫细胞化学联合显示卡哈尔-雷茨乌斯细胞与内嗅传入纤维之间存在密切关系。这种时间和空间关系表明,卡哈尔-雷茨乌斯细胞在皮质发育早期作为内嗅传入纤维的引导信号。