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Molecular mechanisms of exercise-induced neuroprotection against Parkinson's diseaseOA

Molecular mechanisms of exercise-induced neuroprotection against Parkinson's disease

Youngil Lee;Beomsoo Ju;Yohan Cheon;Namita Mishra;Emma Fletcher;Panagiotis Koutakis;Gulnaz T.Javan;Young C.Jang

Molecular and Cellular Exercise Physiology Laboratory,Department of Movement Sciences and Health,Usha Kundu,MD College of Health,University of West Florida,Pensacola,FL,32514,USAMolecular and Cellular Exercise Physiology Laboratory,Department of Movement Sciences and Health,Usha Kundu,MD College of Health,University of West Florida,Pensacola,FL,32514,USAMolecular and Cellular Exercise Physiology Laboratory,Department of Movement Sciences and Health,Usha Kundu,MD College of Health,University of West Florida,Pensacola,FL,32514,USAMolecular and Cellular Exercise Physiology Laboratory,Department of Movement Sciences and Health,Usha Kundu,MD College of Health,University of West Florida,Pensacola,FL,32514,USADepartment of Public Health,Usha Kundu,MD College of Health,University of West Florida,Pensacola,FL,32514,USADepartment of Public Health,Usha Kundu,MD College of Health,University of West Florida,Pensacola,FL,32514,USAThanatos Laboratory,Department of Physical and Forensic Sciences,Alabama State University,Montgomery,AL,36104,USADepartment of Orthopedics,Emory Musculoskeletal Institute in School of Medicine,Emory University,USA

Parkinson's diseaseExerciseMitochondriaAutophagyOxidative stress

Parkinson's diseaseExerciseMitochondriaAutophagyOxidative stress

《运动医学与健康科学(英文)》 2026 (1)

3-22,20

This work was supported by an AIMS fellowship grant from the University of West Florida(04523:YL)and partially by the National Institutes of Health grant under Award Number R16-GM149358 and the National Science Foundation grant DUE 2344997.

10.1016/j.smhs.2025.05.004

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