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Article

Aerobic Exercise Alleviates Oligodendrocyte Injury and Ferroptosis-Related Features in MPTP-Induced Parkinsonian Mice with Improved Neuropathological Phenotypes

1
School of Sports and Health, Tianjin Sport University, Tianjin 301617, China
2
Academy of Sports Sciences, Shandong Sport University, Jinan 250102, China
3
School of Sports and Health, Shanghai Sport University, 650 Qingyuan Road, Shanghai 200438, China
*
Authors to whom correspondence should be addressed.
Brain Sci. 2026, 16(9), 904; https://doi.org/10.3390/brainsci16090904
Submission received: 23 July 2026 / Revised: 19 August 2026 / Accepted: 20 August 2026 / Published: 24 August 2026
(This article belongs to the Section Neurodegenerative Diseases)

Abstract

Objectives: The pathological progression of Parkinson’s disease (PD) involves alterations across multiple neural cell types, and glial–neuronal communication substantially influences neuronal function. Oligodendrocytes (OLs) have been implicated in PD pathology, but the underlying regulatory mechanisms remain incompletely understood. Methods: In this study, single-nucleus RNA sequencing and spatial transcriptomics were used to characterize OL-associated changes and explore potentially relevant mechanisms in the substantia nigra pars compacta (SNpc) of MPTP-induced parkinsonian mice. Molecular validation was subsequently performed in an exercise intervention cohort. Results: These analyses revealed a significant reduction in OL abundance in the SNpc, accompanied by enrichment of ferroptosis-related pathways. Aerobic exercise partially restored the expression of the OL marker gene Plp1 and the antioxidant pathway-related molecules Nrf2 and Gpx4, while reducing ferroptosis-related oxidative stress. These changes were associated with improvements in PD-like pathological phenotypes. Exploratory untargeted metabolomics further identified candidate alterations in metabolites and pathways related to redox homeostasis, energy metabolism, and myelin-associated processes after MPTP treatment and exercise intervention. Conclusions: Collectively, exercise-associated improvements in MPTP-induced PD-like phenotypes coincided with reductions in OL/myelin-related injury and ferroptosis-related stress. These findings suggest that OL-associated ferroptosis-related stress may represent one of several processes contributing to neuronal injury in PD and may be responsive to aerobic exercise. This study provides a theoretical basis for further investigation of exercise-based rehabilitation strategies and potential therapeutic targets for PD.
Keywords: Parkinson’s disease; ferroptosis; oligodendrocytes; aerobic exercise Parkinson’s disease; ferroptosis; oligodendrocytes; aerobic exercise

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MDPI and ACS Style

Yan, M.; Zhang, S.; Zhou, Z.; Yang, C.; Tian, X.; Chen, P. Aerobic Exercise Alleviates Oligodendrocyte Injury and Ferroptosis-Related Features in MPTP-Induced Parkinsonian Mice with Improved Neuropathological Phenotypes. Brain Sci. 2026, 16, 904. https://doi.org/10.3390/brainsci16090904

AMA Style

Yan M, Zhang S, Zhou Z, Yang C, Tian X, Chen P. Aerobic Exercise Alleviates Oligodendrocyte Injury and Ferroptosis-Related Features in MPTP-Induced Parkinsonian Mice with Improved Neuropathological Phenotypes. Brain Sciences. 2026; 16(9):904. https://doi.org/10.3390/brainsci16090904

Chicago/Turabian Style

Yan, Min, Sen Zhang, Zigui Zhou, Changzhi Yang, Xuewen Tian, and Peijie Chen. 2026. "Aerobic Exercise Alleviates Oligodendrocyte Injury and Ferroptosis-Related Features in MPTP-Induced Parkinsonian Mice with Improved Neuropathological Phenotypes" Brain Sciences 16, no. 9: 904. https://doi.org/10.3390/brainsci16090904

APA Style

Yan, M., Zhang, S., Zhou, Z., Yang, C., Tian, X., & Chen, P. (2026). Aerobic Exercise Alleviates Oligodendrocyte Injury and Ferroptosis-Related Features in MPTP-Induced Parkinsonian Mice with Improved Neuropathological Phenotypes. Brain Sciences, 16(9), 904. https://doi.org/10.3390/brainsci16090904

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