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Updated: Feb 7, 2026

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Published on: January 16, 2019
The Neuroplastic and Therapeutic Potential of Spinal Interneurons in the Injured Spinal Cord
Lyandysha V Zholudeva1, Liang Qiang1, Vitaliy Marchenko1
1Department of Neurobiology and Anatomy, College of Medicine, Drexel University, 2900 W Queen Lane, Philadelphia, PA 19129, USA; Spinal Cord Research Center, College of Medicine, Drexel University, 2900 W Queen Lane, Philadelphia, PA 19129, USA.
Abstract:
The central nervous system is not a static, hard-wired organ. Examples of neuroplasticity, whether at the level of the synapse, the cell, or within and between circuits, can be found during development, throughout the progression of disease, or after injury. One essential component of the molecular, anatomical, and functional changes associated with neuroplasticity is the spinal interneuron (SpIN). Here, we draw on recent multidisciplinary studies to identify and interrogate subsets of SpINs and their roles in locomotor and respiratory circuits. We highlight some of the recent progress that elucidates the importance of SpINs in circuits affected by spinal cord injury (SCI), especially those within respiratory networks; we also discuss potential ways that spinal neuroplasticity can be therapeutically harnessed for recovery.
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