Spinal Cord Regeneration

Spinal cord regeneration is the restoration of damaged spinal cord tissue and neural function after injury, an important goal in medicine because mature central nervous system neurons have limited natural repair capacity. Regeneration research addresses how injured axons can survive, extend through damaged tissue, and reconnect with appropriate neural circuits despite inhibitory molecules, inflammation, and glial scar formation. Approaches include neuroprotective treatments, biomaterials, rehabilitation, cell-based therapies, and strategies that modify the injury environment or stimulate axonal growth. These efforts aim to improve motor and sensory recovery, clarify mechanisms of neural repair, and advance treatments for spinal cord injury.

Spinal Cord Regeneration - Related Videos

Research

JoVE EoE - Neurotherapeutics

Schwann Cell-Seeded Conduits for Axonal Regeneration After Spinal Cord Injury

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2025

Source: Lee, Y., et.al. Transplantation of Schwann Cells Inside PVDF-TrFE Conduits to Bridge Transected Rat Spinal Cord Stumps to Promote Axon Regeneration Across the Gap. J. Vis. Exp. (2017)This video demonstrates the use of a piezoelectric polymer conduit seeded with Schwann cells to promote axon regeneration in a transected rat spinal cord. The conduit provides structural guidance, while its bioelectric properties stimulate neurite outgrowth. Schwann cells within the conduit secrete...

Electrophysiological Recordings For Assessing Neuronal Regenerations in Co-cultured Spinal Cord Slices

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2025

This video presents electrophysiological recordings from organotypic co-cultures of spinal cord slices, captured using a multi-electrode array or MEA device. These recordings assess neuronal regeneration between the slices. The synchronized electrical activity observed confirms successful neural regeneration.

Research

JoVE Journal - Neuroscience
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Investigating Functional Regeneration in Organotypic Spinal Cord Co-cultures Grown on Multi-electrode Arrays

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Cited by 4 •

2015

Here we present a protocol that is based on spinal cord slices cultured on multi-electrode arrays to study functional regeneration of propriospinal connections in vitro.

Acute and Chronic Tactile Sensory Testing after Spinal Cord Injury in Rats

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Cited by 55 •

2012

We describe two tactile sensory testing methods for acute or chronic periods of spinal cord injury in rats. These validated procedures can detect the development and maintenance of allodynia-like sensations.

Studying the Regeneration of Functional Connections between Spinal Cord Slices Using a Multi-Electrode Array

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2025

The video demonstrates the functional regeneration of propriospinal connections using a multi-electrode array (MEA)-based assay. The spinal cord slices are placed on the MEA and are allowed to fuse. The fused slices are mechanically separated by creating a lesion, inducing propriospinal neurons to grow over the lesion and connect the slices. The electrical activity of the slices is assessed to identify the regeneration of functional connections.

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