1. Autophagy mediates the degradation of synaptic vesicles: A potential mechanism of synaptic plasticity injury induced by microwave exposure in rats.
- Author
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Hao Y, Li W, Wang H, Zhang J, Yu C, Tan S, Wang H, Xu X, Dong J, Yao B, Zhou H, Zhao L, and Peng R
- Subjects
- Animals, Autophagy-Related Protein 5 metabolism, Body Temperature radiation effects, Brain Waves radiation effects, Dose-Response Relationship, Radiation, Glutamic Acid metabolism, Long-Term Potentiation radiation effects, Lysosomal Membrane Proteins metabolism, Male, Maze Learning radiation effects, Microtubule-Associated Proteins metabolism, Neurons radiation effects, Neurons ultrastructure, Perforant Pathway radiation effects, Perforant Pathway ultrastructure, Rats, Rats, Wistar, Synaptic Vesicles ultrastructure, Autophagy radiation effects, Hippocampus cytology, Microwaves adverse effects, Neuronal Plasticity radiation effects, Synaptic Vesicles radiation effects
- Abstract
To explore how autophagy changes and whether autophagy is involved in the pathophysiological process of synaptic plasticity injury caused by microwave radiation, we established a 30 mW/cm
2 microwave-exposure in vivo model, which caused reversible injuries in rat neurons. Microwave radiation induced cognitive impairment in rats and synaptic plasticity injury in rat hippocampal neurons. Autophagy in rat hippocampal neurons was activated following microwave exposure. Additionally, we observed that synaptic vesicles were encapsulated by autophagosomes, a phenomenon more evident in the microwave-exposed group. Colocation of autophagosomes and synaptic vesicles in rat hippocampal neurons increased following microwave exposure., Conclusion: microwave exposure led to the activation of autophagy in rat hippocampal neurons, and excessive activation of autophagy might damage synaptic plasticity by mediating synaptic vesicle degradation., (Copyright © 2018 Elsevier Inc. All rights reserved.)- Published
- 2018
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