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脊髓TRAQ:一种新型的颈椎脊髓体积图谱可识别健康和中风后小鼠的皮质脊髓束突触投射组。

SpinalTRAQ: A novel volumetric cervical spinal cord atlas identifies the corticospinal tract synaptic projectome in healthy and post-stroke mice.

作者信息

Poinsatte Katherine, Kenwood Matthew, Betz Dene, Nawaby Ariana, Ajay Apoorva D, Xu Wei, Plautz Erik J, Kong Xiangmei, Ramirez Denise M O, Goldberg Mark P

机构信息

Department of Neurology, University of Texas Southwestern Medical Center, Dallas, Texas, USA.

Peter O'Donnell Brain Institute, University of Texas Southwestern Medical Center, Dallas, Texas, USA.

出版信息

bioRxiv. 2024 Oct 10:2024.08.23.609434. doi: 10.1101/2024.08.23.609434.

Abstract

Descending corticospinal tract (CST) connections to the neurons of the cervical spinal cord are vital for performance of forelimb-specific fine motor skills. In rodents, CST axons are almost entirely crossed at the level of the medullary decussation. While specific contralateral axon projections have been well-characterized using anatomic and molecular approaches, the field currently lacks a cohesive imaging modality allowing rapid quantitative assessment of the entire, bilateral cervical cord projectome at the level of individual laminae and cervical levels. This is potentially important as the CST is known to undergo marked structural remodeling in development, injury, and disease. We developed SpinalTRAQ (Spinal cord Tomographic Registration and Automated Quantification), a novel volumetric cervical spinal cord atlas and machine learning-driven microscopy acquisition and analysis pipeline that uses serial two-photon tomography- images to generate unbiased, region-specific quantification of the fluorescent pixels of anterograde AAV-labeled CST pre-synaptic terminals. In adult mice, the CST synaptic projectome densely innervates the contralateral hemicord, particularly in laminae 5 and 7, with sparse, monosynaptic input to motoneurons in lamina 9. Motor pools supplying axial musculature in the upper cervical cord are bilaterally innervated. The remainder of the ipsilateral cord has sparse labeling in a distinct distribution compared to the contralateral side. Following a focal stroke of the motor cortex, there is a complete loss of descending corticospinal axons from the injured side. Consistent with prior reports of axon collateralization, the CST spinal projectome increases at four weeks post-stroke and continues to elevate by six weeks post stroke. At six weeks post-stroke, we observed striking synapse formation in the denervated hemicord from the uninjured CST in a homotopic distribution. Additionally, CST synaptic reinnervation increases in the denervated lamina 9 in nearly all motoneuron pools, exhibiting novel patterns of connectivity. Detailed level- and lamina-specific quantification of the bilateral cervical spinal cord synaptic projectome reveals previously undescribed patterns of CST connectivity in health and injury-related plasticity.

摘要

皮质脊髓束(CST)下行至颈脊髓神经元的连接对于前肢特定精细运动技能的表现至关重要。在啮齿动物中,CST轴突在延髓交叉水平几乎完全交叉。虽然使用解剖学和分子方法对特定的对侧轴突投射已有充分的描述,但目前该领域缺乏一种连贯的成像方式,无法在个体板层和颈椎水平上对整个双侧颈髓投射图谱进行快速定量评估。这可能很重要,因为已知CST在发育、损伤和疾病过程中会经历显著的结构重塑。我们开发了SpinalTRAQ(脊髓断层扫描配准与自动定量),这是一种新型的体积颈脊髓图谱以及机器学习驱动的显微镜采集和分析流程,它使用连续双光子断层扫描图像来对顺行性AAV标记的CST突触前终末的荧光像素进行无偏倚的、区域特异性定量。在成年小鼠中,CST突触投射图谱密集地支配对侧半脊髓,特别是在板层5和7,而对板层9中的运动神经元有稀疏的单突触输入。供应颈上脊髓轴向肌肉的运动神经元池接受双侧支配。与对侧相比,同侧脊髓的其余部分有稀疏的标记,分布明显不同。运动皮质局灶性中风后,损伤侧的下行皮质脊髓轴突完全丧失。与先前关于轴突侧支化的报道一致,CST脊髓投射图谱在中风后四周增加,并在中风后六周持续升高。在中风后六周,我们观察到未受损的CST在去神经支配的半脊髓中以同位分布形成了显著的突触。此外,几乎所有运动神经元池的去神经支配的板层9中CST突触再支配增加,呈现出新的连接模式。对双侧颈脊髓突触投射图谱进行详细的水平和板层特异性定量,揭示了健康和损伤相关可塑性中CST连接性的先前未描述的模式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/66d6/11482800/cce2e8c9239a/nihpp-2024.08.23.609434v2-f0001.jpg

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