Back to search

Article

Exercise Engages Coordinated Neuron–Glia Signaling to Shape Spinal Cord Plasticity

2025-12-15

Abstract excerpt

<h4>ABSTRACT</h4> Physical activity induces systemic benefits for brain and muscle function, but how the healthy spinal cord adapts to exercise remains largely unknown. Here, we combine bulk proteomics, single-nucleus RNA sequencing, and cellular communication inference to map exercise- induced molecular adaptations in the mouse lumbar spinal cord. Endurance training elicited robust baseline remodeling, dominated...

Topics

Open a Topic to create a Post that cites this publication.

Identifiers and source

Literature Corpus work
5c5ab4f8-d1eb-534d-9826-c962d59231d7
DOI
10.64898/2025.12.11.693787
Open publication

Related research

Semantic proximity does not establish scientific evidence.

Click a neighbor to travelStep 1 · 12 closest
Interactive article relationship graphSelect a related publication card to move it into the centre and load its closest explainable connections. Solid lines are source-backed structured connections. Dashed lines are semantic discovery signals and are not scientific evidence.
Exercise Engages Coordinated Neuron–Glia Signaling to Shape Spinal Cord PlasticityDOI 10.64898/2025.12.11.693787
Select a neighboring publication to make it the new centre.