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Iron promotes neurological function recovery in mice with ischemic stroke through endogenous repair mechanisms

再髓鞘化 内生 中风恢复 冲程(发动机) 胶质增生 神经科学 医学 内科学 中枢神经系统 生物 髓鞘 机械工程 工程类 康复
作者
Xin Guo,Xiaofang Jin,Kang Min Han,Shaomeng Kang,Siyu Tian,Xin Lv,Mudi Feng,Huiwen Zheng,Yong Zuo,Guodong Xu,Ming Hu,Jing Xu,Peiyuan Lv,Yan‐Zhong Chang
出处
期刊:Free Radical Biology and Medicine [Elsevier]
卷期号:182: 59-72 被引量:18
标识
DOI:10.1016/j.freeradbiomed.2022.02.017
摘要

The endogenous repair mechanisms play an important role in the recovery of nerve function after stroke, such as gliosis, synaptic plasticity, remyelination and nerve regeneration. Iron is the most abundant trace metal element in the brain and plays a crucial role in the maintenance of normal cerebral function. It is an important coenzyme factor in the process of cell metabolism, DNA synthesis, purine catabolism and neurotransmitter synthesis and decomposition. However, it is unclear what role iron plays in the long-term recovery of neurological function after stroke. In this study, we first observed that changes in iron metabolism occurred during neurological function recovery in the mice with distal middle cerebral artery occlusion (dMCAO). Our data showed that plasticity changes due to endogenous repair mechanisms resulted in improvements in cerebral cortex function. These changes involved gliosis, synaptic function reconstruction, remyelination, and activation of neural stem cells. In order to examine the potential role of iron, we synthesized liposomal-encapsulated deferoxamine (DFO) nanoparticles to further explore the effect and the mechanism of iron on the recovery of neurological function in dMCAO mice. Our results showed that liposome-DFO decreased iron deposition and reversed plasticity changes in cerebral cortex function after stroke, which delayed neurological function recovery. This experiment shows that the increasing iron level promotes endogenous repair in ischemic stroke. Our finding reveals the change regularity of iron and emphasizes the beneficial role of iron in the recovery process of neurological function, which provides an important basis for the prevention and/or treatment of ischemia-reperfusion and recovery after stroke.
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