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Updated: Sep 16, 2025

Generation of Human Neurons and Oligodendrocytes from Pluripotent Stem Cells for Modeling Neuron-Oligodendrocyte Interactions
Published on: November 9, 2020
Rotarod training reverses corticosterone-induced motor deficits via oligodendrocyte lineage cell modulation
Jada Chia-Di Lee1, Benson Wui-Man Lau2, Suk-Yu Yau2
1School of Biomedical Sciences, Li Ka Shing Faculty of Medicine, The University of Hong Kong, Hong Kong Special Administrative Region, China.
None:
JOURNAL/nrgr/04.03/01300535-202606000-00058/figure1/v/2026-02-11T151048Z/r/image-tiff 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.
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