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The Histopathology of Severe Graded Compression in Lower Thoracic Spinal Cord Segment of Rat, Evaluated at Late Post-injury Phase. | LitMetric

The Histopathology of Severe Graded Compression in Lower Thoracic Spinal Cord Segment of Rat, Evaluated at Late Post-injury Phase.

Cell Mol Neurobiol

Department of Neurodegeneration, Plasticity and Repair, Institute of Neurobiology, Biomedical Research Center of the Slovak Academy of Sciences, Soltesovej 4-6, 040 01, Kosice, Slovakia.

Published: January 2022

AI Article Synopsis

  • Spontaneous recovery of motor functions after mild/moderate spinal cord injuries in rodents complicates evaluations of therapeutic effectiveness.
  • A study involving severe graded weight-compression spinal cord injury in Wistar rats assessed functional recovery and monitored changes in the blood-spinal cord barrier 24 hours post-injury.
  • The study concluded that a 40 g weight represents the upper limit for severe injury in this model, based on functional outcomes and tissue damage observed over the recovery period.

Article Abstract

Spontaneous recovery of lost motor functions is relative fast in rodent models after inducing a very mild/moderate spinal cord injury (SCI), and this may complicate a reliable evaluation of the effectiveness of potential therapy. Therefore, a severe graded (30 g, 40 g and 50 g) weight-compression SCI at the Th9 spinal segment, involving an acute mechanical impact followed by 15 min of persistent compression, was studied in adult female Wistar rats. Functional parameters, such as spontaneous recovery of motor hind limb and bladder emptying function, and the presence of hematuria were evaluated within 28 days of the post-traumatic period. The disruption of the blood-spinal cord barrier, measured by extravasated Evans Blue dye, was examined 24 h after the SCI, when maximum permeability occurs. At the end of the survival period, the degradation of gray and white matter associated with the formation of cystic cavities, and quantitative changes of glial structural proteins, such as GFAP, and integral components of axonal architecture, such as neurofilaments and myelin basic protein, were evaluated in the lesioned area of the spinal cord. Based on these functional and histological parameters, and taking the animal's welfare into account, the 40 g weight can be considered as an upper limit for severe traumatic injury in this compression model.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8732890PMC
http://dx.doi.org/10.1007/s10571-021-01139-7DOI Listing

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