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Article

Treadmill Exercise Facilitates Synaptic Plasticity in APP/PS1 Mice by Regulating Hippocampal AMPAR Activity

1
Department of Strength and Conditioning Assessment and Monitoring, Beijing Sport University, Beijing 100084, China
2
Beijing Key Laboratory of Sports Performance and Skill Assessment, Beijing Sport University, Beijing 100084, China
3
China Institute of Sport and Health Science, Beijing Sport University, Beijing 100084, China
4
Department of Pharmacology and Toxicology, Medical College of Wisconsin, Milwaukee, WI 53226, USA
*
Author to whom correspondence should be addressed.
Cells 2024, 13(19), 1608; https://doi.org/10.3390/cells13191608
Submission received: 3 September 2024 / Revised: 22 September 2024 / Accepted: 23 September 2024 / Published: 25 September 2024

Abstract

Accumulating evidence underscores exercise as a straightforward and cost-effective lifestyle intervention capable of mitigating the risk and slowing the emergence and progression of Alzheimer’s disease (AD). However, the intricate cellular and molecular mechanisms mediating these exercise-induced benefits in AD remain elusive. The present study delved into the impact of treadmill exercise on memory retrieval performance, hippocampal synaptic plasticity, synaptic morphology, and the expression and activity of α-amino-3-hydroxy-5-methyl-4-isoxazolepropionic receptors (AMPARs) in 6-month-old APP/PS1 mice. APP/PS1 mice (4-month-old males) were randomly assigned to either a treadmill exercise group or a sedentary group, with C57BL/6J mice (4-month-old males) as the control group (both exercise and sedentary). The exercise regimen spanned 8 weeks. Our findings revealed that 8-week treadmill exercise reversed memory retrieval impairment in step-down fear conditioning in 6-month-old APP/PS1 mice. Additionally, treadmill exercise enhanced basic synaptic strength, short-term potentiation (STP), and long-term potentiation (LTP) of the hippocampus in these mice. Moreover, treadmill exercise correlated with an augmentation in synapse numbers, refinement of synaptic structures, and heightened expression and activity of AMPARs. Our findings suggest that treadmill exercise improves behavioral performance and facilitates synaptic transmission by increasing structural synaptic plasticity and the activity of AMPARs in the hippocampus of 6-month-old APP/PS1 mice, which is involved in pre- and postsynaptic processes.
Keywords: exercise; synaptic plasticity; AMPA receptor; Alzheimer’s disease exercise; synaptic plasticity; AMPA receptor; Alzheimer’s disease

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MDPI and ACS Style

Yu, L.; Li, Y.; Lv, Y.; Gu, B.; Cai, J.; Liu, Q.-S.; Zhao, L. Treadmill Exercise Facilitates Synaptic Plasticity in APP/PS1 Mice by Regulating Hippocampal AMPAR Activity. Cells 2024, 13, 1608. https://doi.org/10.3390/cells13191608

AMA Style

Yu L, Li Y, Lv Y, Gu B, Cai J, Liu Q-S, Zhao L. Treadmill Exercise Facilitates Synaptic Plasticity in APP/PS1 Mice by Regulating Hippocampal AMPAR Activity. Cells. 2024; 13(19):1608. https://doi.org/10.3390/cells13191608

Chicago/Turabian Style

Yu, Laikang, Yan Li, Yuanyuan Lv, Boya Gu, Jiajia Cai, Qing-Song Liu, and Li Zhao. 2024. "Treadmill Exercise Facilitates Synaptic Plasticity in APP/PS1 Mice by Regulating Hippocampal AMPAR Activity" Cells 13, no. 19: 1608. https://doi.org/10.3390/cells13191608

APA Style

Yu, L., Li, Y., Lv, Y., Gu, B., Cai, J., Liu, Q.-S., & Zhao, L. (2024). Treadmill Exercise Facilitates Synaptic Plasticity in APP/PS1 Mice by Regulating Hippocampal AMPAR Activity. Cells, 13(19), 1608. https://doi.org/10.3390/cells13191608

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