Fudan University, Shanghai, 200433, China.
Key Laboratory of Structural Biology of Zhejiang Province, School of Life Sciences, Westlake University, Hangzhou, 310024, Zhejiang, China.
Sci Rep. 2023 Sep 30;13(1):16445. doi: 10.1038/s41598-023-43610-z.
Descending tracts carry motor signals from the brain to spinal cord. However, few previous studies show the full view of the long tracts from a 3D perspective. In this study, we have followed five less well-known tracts that project from midbrain, hindbrain, and cerebellum to the mouse spinal cord, using the tissue clearing method in combination with tiling light sheet microscopy. By tracing axons in spinal cord, we found several notable features: among the five tracts the collateral "sister" branches occurred only in the axons originating from the cerebellospinal tracts; the axons from the spinal trigeminal nucleus crossed the midline of spinal cord to the contralateral side; those arising in the medullary reticular formation ventral part gave many branches in both cervical and lumbar segments; the axons from superior colliculus terminated only at upper cervical but with abundant branches in the hindbrain. Furthermore, we investigated the monosynaptic connections between the tracts and motor neurons in the spinal cord through hydrogel-based tissue expansion, and found several monosynaptic connections between the medullary reticular formation ventral part axons and spinal motor neurons. We believe that this is the first study to show the full 3D scope of the projection patterns and axonal morphologies of these five descending tracts to the mouse spinal cord. In addition, we have developed a new method for future study of descending tracts by three-dimensional imaging.
下行束将来自大脑的运动信号传递到脊髓。然而,以前的研究很少从三维角度展示长束的全貌。在这项研究中,我们使用组织透明化方法结合平铺光片显微镜,追踪了来自中脑、后脑和小脑投射到小鼠脊髓的五条不太知名的束。通过在脊髓中追踪轴突,我们发现了几个显著特征:在这五条束中,只有来自小脑脊髓束的轴突会产生侧支“姐妹”分支;来自三叉神经脊束核的轴突穿过脊髓的中线到对侧;来自延髓网状结构腹侧的那些轴突在颈段和腰段都有许多分支;来自上丘的轴突仅终止于上颈段,但在后脑有丰富的分支。此外,我们通过基于水凝胶的组织扩展研究了这些束与脊髓运动神经元之间的单突触连接,发现延髓网状结构腹侧的轴突与脊髓运动神经元之间有几个单突触连接。我们相信,这是首次全面展示这五条下行束投射模式和轴突形态到小鼠脊髓的三维全貌的研究。此外,我们已经开发了一种新的三维成像方法,用于未来对下行束的研究。