SpinalTRAQ:一种用于颈脊髓容量分析的新型管道,可识别健康和中风后小鼠的皮质脊髓束突触项目组。

IF 2.7 3区 医学 Q3 NEUROSCIENCES
eNeuro Pub Date : 2025-09-23 Print Date: 2025-09-01 DOI:10.1523/ENEURO.0276-25.2025
Katherine Poinsatte, Matthew Kenwood, Dene Betz, Ariana Nawaby, Apoorva D Ajay, Wei Xu, Erik J Plautz, Xiangmei Kong, Julian P Meeks, Denise M O Ramirez, Mark P Goldberg
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引用次数: 0

摘要

皮质脊髓束(CST)对前肢特定精细运动技能至关重要。在啮齿类动物中,它在发育、损伤和疾病状态中经历了广泛的结构重塑,主要影响运动功能。大量的文献,涵盖了许多损伤模型,经常评估这些预测。尽管如此,缺乏一种快速、定量评估双侧颈脊髓项目的有凝聚力的成像方式。为了解决这个问题,我们开发了SpinalTRAQ(脊髓断层扫描配准和自动量化),这是一种新型的小鼠颈脊髓体积参考图谱和基于机器学习的分析管道。使用串行双光子断层扫描,SpinalTRAQ可以对荧光标记的CST突触前终端进行无偏、区域特异性定量。在健康雄性小鼠中,CST表现出明显的双侧突触投射组,对侧的5和7层板和同侧的7层板神经分布最密集。我们还观察到在第9层,特别是轴向运动神经元池中,突触输入稀疏,我们发现这是针对脊髓运动神经元的。局灶性运动皮质中风后,受损的CST轴突被耗尽,对侧CST投射在4周和6周后显著增加。中风后6周,同侧CST突触增加了5倍,同位层和所有运动神经元池增加最多。SpinalTRAQ提供了双侧颈脊髓突触项目组的详细、水平和板层特异性量化,揭示了以前未被认识到的损伤后CST的连通性和可塑性。中风是世界范围内致残的主要原因,数百万幸存者经历了严重影响其生活质量的长期运动障碍。了解运动控制的关键通路皮质脊髓束(CST)在损伤后如何适应,对于制定有效的康复策略至关重要。在这里,我们介绍了SpinalTRAQ,一种新的成像和分析工具,可以精确地绘制颈脊髓CST连接的层状特异性图谱。使用SpinalTRAQ,我们发现中风后CST具有显著的可塑性,包括未损伤的CST对运动神经元的强大突触再神经支配。这些发现为运动恢复的机制提供了新的见解,并为推进旨在增强脑卒中患者神经修复和恢复运动功能的治疗提供了强大的资源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
SpinalTRAQ: A Novel Pipeline for Volumetric Cervical Spinal Cord Analysis Identifies the Corticospinal Tract Synaptic Projectome in Healthy and Post-stroke Mice.

The corticospinal tract (CST) is essential for forelimb-specific fine motor skills. In rodents, it undergoes extensive structural remodeling across development, injury, and disease states, with major implications for motor function. A vast body of literature, spanning numerous injury models, frequently assesses these projections. Despite this, a cohesive imaging modality for rapid, quantitative assessment of the bilateral cervical spinal cord projectome is lacking. To address this, we developed SpinalTRAQ (Spinal cord Tomographic Registration and Automated Quantification), a novel mouse cervical spinal cord volumetric reference atlas and machine learning-based analytical pipeline. Using serial two-photon tomography, SpinalTRAQ enables unbiased, region-specific quantification of fluorescently labeled CST presynaptic terminals. In healthy male mice, the CST exhibits a distinct bilateral synaptic projectome, with the densest innervation in laminae 5 and 7 on the contralateral side and lamina 7 on the ipsilateral side. We additionally observed sparse synaptic input in lamina 9, specifically axial motor neuron pools, which we found was targeted to spinal motoneurons. Following focal motor cortical stroke, the injured CST axons are depleted, and contralesional CST projections are significantly increased after 4 and 6 weeks. By 6 weeks post-stroke, ipsilateral CST synapses were increased by fivefold, with the greatest increases seen in homotopic laminae and all motor neuron pools. SpinalTRAQ offers detailed, level- and lamina-specific quantification of the bilateral cervical spinal cord synaptic projectome, revealing previously unrecognized CST connectivity and plasticity after injury.

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来源期刊
eNeuro
eNeuro Neuroscience-General Neuroscience
CiteScore
5.00
自引率
2.90%
发文量
486
审稿时长
16 weeks
期刊介绍: An open-access journal from the Society for Neuroscience, eNeuro publishes high-quality, broad-based, peer-reviewed research focused solely on the field of neuroscience. eNeuro embodies an emerging scientific vision that offers a new experience for authors and readers, all in support of the Society’s mission to advance understanding of the brain and nervous system.
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