Department of Neurology, Stanford Medical School, Stanford, California 94305, USA.
J Neurosci. 2010 Jan 20;30(3):894-904. doi: 10.1523/JNEUROSCI.4318-09.2010.
Although embryonic stem (ES) cells have been induced to differentiate into diverse neuronal cell types, the production of cortical projection neurons with the correct morphology and axonal connectivity has not been demonstrated. Here, we show that in vitro patterning is critical for generating neural precursor cells (ES-NPCs) competent to form cortical pyramidal neurons. During the first week of neural induction, these ES-NPCs begin to express genes that are specific for forebrain progenitors; an additional week of differentiation produces mature neurons with many features of cortical pyramidal neurons. After transplantation into the murine cerebral cortex, these specified ES-NPCs manifest the correct dendritic and axonal connectivity for their areal location. ES-NPCs transplanted into the deep layers of the motor cortex differentiate into layer 5 pyramidal neurons and extend axons to distant subcortical targets such as the pons and as far caudal as the pyramidal decussation and descending spinal tract and, importantly, do not extend axons to inappropriate targets such as the superior colliculus (SC). ES-NPCs transplanted into the visual cortex extend axons to the dorsal aspect of the SC and pons but avoid ventral SC and the pyramidal tract, whereas cells transplanted deep into the somatosensory cortex project axons to the ventral SC, avoiding the dorsal SC. Thus, these data establish that ES-derived cortical projection neurons can integrate into anatomically relevant circuits.
尽管胚胎干细胞(ES 细胞)已被诱导分化为多种神经元细胞类型,但尚未证明能够产生具有正确形态和轴突连接的皮质投射神经元。在这里,我们表明体外模式化对于产生具有形成皮质锥体细胞能力的神经前体细胞(ES-NPC)是至关重要的。在神经诱导的第一周,这些 ES-NPC 开始表达特定于前脑祖细胞的基因;再分化一周可产生具有皮质锥体细胞许多特征的成熟神经元。移植到小鼠大脑皮层后,这些特化的 ES-NPC 表现出与其区域位置相对应的正确树突和轴突连接。移植到运动皮层深层的 ES-NPC 分化为第 5 层锥体细胞,并将轴突延伸至远处的皮质下靶标,如脑桥,最远可达锥体交叉和下行脊髓束,重要的是,它们不会将轴突延伸至不适当的靶标,如上丘(SC)。移植到视皮层的 ES-NPC 延伸轴突到 SC 和脑桥的背侧,但避开 SC 的腹侧和锥体束,而移植到体感皮层深处的细胞则将轴突投射到 SC 的腹侧,避开 SC 的背侧。因此,这些数据表明 ES 衍生的皮质投射神经元可以整合到解剖学上相关的回路中。