Skip to main navigation Skip to search Skip to main content

Rotarod training reverses corticosterone-induced motor deficits via oligodendrocyte lineage cell modulation

  • Jada Chia Di Lee
  • , Benson Wui Man Lau
  • , Suk Yu Yau
  • , Joseph Wai Hin Leung
  • , Harmony Kai Hei Wong
  • , Dalinda Isabel Sanchez Vidana
  • , Tatia M.C. Lee
  • , Wu Tian Wu
  • , Kwok Fai So (Corresponding Author)

Research output: Journal article publicationJournal articleAcademic researchpeer-review

Abstract

Adult-born oligodendrocytes are continuously produced in the brains of rodents. The functional role of these cells has been linked to the motor-related activities of healthy animals and is vital for acquiring new motor skills. However, the relationship between these cells and the control of motor-related activities has not been investigated in pathological conditions. Therefore, the aim of this study is to investigate the role of oligodendrocytes in depression-related motor deficits and the effects of training. Psychomotor retardation is a key symptom of depression. Consistent with the impairments observed in rodent motor performance, the proliferation and activation of adult-born oligodendrocytes are altered in a corticosterone-induced stress paradigm. Therapeutic rotarod training can alleviate these symptoms by reversing the aforementioned changes. Notably, these alterations are particularly pronounced in layer I of the motor cortex. Thus, this study provides evidence of the potential functional involvement of adult-born oligodendrocytes in the motor impairments observed in the depressed animals. Additionally, it offers preliminary results for further investigation into layer I of the motor cortex in relation to these pathological conditions.

Original languageEnglish
Pages (from-to)2440-2447
Number of pages8
JournalNeural Regeneration Research
Volume21
Issue number6
DOIs
Publication statusPublished - Jun 2026

Keywords

  • corticosterone-induced stress
  • exercise
  • major depressive disorder
  • motor cortex
  • motor deficits
  • motor training
  • myelination
  • oligodendrocyte lineage cells
  • oligodendrocyte precursor cells
  • psychomotor retardation

ASJC Scopus subject areas

  • Neuroscience (miscellaneous)

Fingerprint

Dive into the research topics of 'Rotarod training reverses corticosterone-induced motor deficits via oligodendrocyte lineage cell modulation'. Together they form a unique fingerprint.

Cite this