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初级传入纤维中直接敲除兰尼碱受体2对脊髓挫伤性损伤后的神经恢复有适度影响。

Direct Ryanodine Receptor-2 Knockout in Primary Afferent Fibers Modestly Affects Neurological Recovery after Contusive Spinal Cord Injury.

作者信息

Orem Ben C, Morehouse Johnny R, Ames Spencer, Burke Darlene A, Magnuson David S K, Stirling David P

机构信息

Kentucky Spinal Cord Injury Research Center, University of Louisville, School of Medicine, Louisville, Kentucky, USA.

Department of Anatomical Sciences and Neurobiology, University of Louisville, School of Medicine, Louisville, Kentucky, USA.

出版信息

Neurotrauma Rep. 2022 Oct 6;3(1):433-446. doi: 10.1089/neur.2022.0044. eCollection 2022.

Abstract

Neuronal ryanodine receptors (RyR) release calcium from internal stores and play a key role in synaptic plasticity, learning, and memory. Dysregulation of RyR function contributes to neurodegeneration and negatively impacts neurological recovery after spinal cord injury (SCI). However, the individual role of RyR isoforms and the underlying mechanisms remain poorly understood. To determine whether RyR2 plays a direct role in axonal fate and functional recovery after SCI, we bred -Cre: tdTomato (Ai9) reporter mice with "floxed" RyR2 mice to directly knock out (KO) RyR2 function in dorsal root ganglion neurons and their spinal projections. Adult 6- to 8-week-old RyR2KO and littermate controls were subjected to a contusive SCI and their dorsal column axons were imaged using two-photon excitation microscopy. We found that direct RyR2KO in dorsal column primary afferents did not significantly alter secondary axonal degeneration after SCI. We next assessed behavioral recovery after SCI and found that direct RyR2KO in primary afferents worsened open-field locomotor scores (Basso Mouse Scale subscore) compared to littermate controls. However, both TreadScan™ gait analysis and overground kinematic gait analysis tests revealed subtle, but no fundamental, differences in gait patterns between the two groups after SCI. Subsequent removal of spared afferent fibers using a dorsal column crush revealed similar outcomes in both groups. Analysis of primary afferents at the lumbar (L3-L5) level similarly revealed no noticeable differences between groups. Together, our results support a modest contribution of dorsal column primary afferent RyR2 in neurological recovery after SCI.

摘要

神经元兰尼碱受体(RyR)从内部储存库释放钙,并在突触可塑性、学习和记忆中起关键作用。RyR功能失调会导致神经退行性变,并对脊髓损伤(SCI)后的神经恢复产生负面影响。然而,RyR亚型的个体作用及其潜在机制仍知之甚少。为了确定RyR2在SCI后轴突命运和功能恢复中是否起直接作用,我们将-Cre:tdTomato(Ai9)报告基因小鼠与“floxed”RyR2小鼠杂交,以直接敲除(KO)背根神经节神经元及其脊髓投射中的RyR2功能。对6至8周龄的成年RyR2KO小鼠和同窝对照小鼠进行挫伤性SCI,并使用双光子激发显微镜对其背柱轴突进行成像。我们发现,背柱初级传入神经元中直接敲除RyR2并不会显著改变SCI后继发性轴突退变。接下来,我们评估了SCI后的行为恢复情况,发现与同窝对照相比,初级传入神经元中直接敲除RyR2会使旷场运动评分(Basso小鼠量表子评分)恶化。然而,TreadScan™步态分析和地面运动学步态分析测试均显示,SCI后两组之间的步态模式存在细微但无根本差异。随后使用背柱挤压术去除备用传入纤维,两组结果相似。对腰段(L3-L5)水平的初级传入神经元进行分析,同样显示两组之间没有明显差异。总之,我们的结果支持背柱初级传入神经元RyR2在SCI后神经恢复中起适度作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/821d/9622210/464cace5924a/neur.2022.0044_figure1.jpg

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