Radojevic Vesna, Kapfhammer Josef P
Universität Basel, Anatomisches Institut, CH-4056 Basel, Switzerland.
Exp Neurol. 2004 Jul;188(1):11-9. doi: 10.1016/j.expneurol.2004.03.015.
The repair of axonal projections and the reconstruction of neuronal circuits after CNS lesions or during neurodegenerative disease are major challenges in restorative neuroscience. We have explored the potential of transplanted immature neurons to repair a specific axonal projection in an entorhino-hippocampal slice culture model system. When slices of immature entorhinal cortex (EC) from tau-GFP transgenic mice were cultured next to slices from postnatal hippocampus, an axonal projection from the E18 embryonic entorhinal cortex to the dentate gyrus of the postnatal hippocampus developed, which was similar to that observed in control cultures. Even more immature neuronal precursors in slices from E15 developing cerebral cortex differentiated and established an axonal projection to the hippocampal slice. This projection terminated specifically in the outer molecular layer of the dentate gyrus, the normal target area of the entorhino-hippocampal projection. When embryonic tissue from the presumptive brainstem area was used, there was still a subpopulation of fibers with a specific termination in the outer molecular layer, but few specific fibers were found in cocultures with embryonic midbrain. Our results show that very immature cortical neurons are potentially able to form an entorhino-hippocampal projection that terminates in a correct lamina-specific fashion in the dentate gyrus. These findings support the idea that immature neuronal precursor cells could be used for the reconstruction of specific neuronal circuits.
中枢神经系统损伤后或神经退行性疾病期间轴突投射的修复以及神经回路的重建是恢复性神经科学中的重大挑战。我们在一个内嗅-海马切片培养模型系统中探索了移植未成熟神经元修复特定轴突投射的潜力。当将来自tau-GFP转基因小鼠的未成熟内嗅皮质(EC)切片与出生后海马的切片相邻培养时,从E18胚胎内嗅皮质到出生后海马齿状回的轴突投射得以发育,这与在对照培养物中观察到的情况相似。甚至来自E15发育中大脑皮质切片中更未成熟的神经元前体也能分化并建立一条到海马切片的轴突投射。该投射特异性地终止于齿状回的外分子层,即内嗅-海马投射的正常靶区。当使用来自假定脑干区域的胚胎组织时,仍有一小部分纤维特异性地终止于外分子层,但在与胚胎中脑的共培养物中发现的特异性纤维很少。我们的结果表明,非常未成熟的皮质神经元有可能形成一种以内嗅-海马投射的形式在齿状回中以正确的层特异性方式终止。这些发现支持了未成熟神经元前体细胞可用于重建特定神经回路的观点。