神经保护
小胶质细胞
活性氧
材料科学
重编程
纳米颗粒
细胞生物学
表型
化学
纳米技术
生物物理学
神经科学
炎症
免疫学
生物化学
生物
细胞
基因
作者
Feng Zeng,Yingwei Wu,Xinwei Li,Xiaojiao Ge,Qinghua Guo,Xiaobing Lou,Zhonglian Cao,Bingwen Hu,Nicholas J. Long,Ying Mao,Cong Li
标识
DOI:10.1002/anie.201802309
摘要
Abstract The neuroprotective effect of ceria nanoparticles in the context of brain disorders has been explained by their antioxidant effect. However, the in‐depth mechanism remains unknown. As resident immune cells in the brain, microglia exert a variety of functional reprogramming termed as polarization in response to stress stimuli. Herein, custom‐made ceria nanoparticles were developed and found to scavenge multiple reactive oxygen species with extremely high efficiency. These nanoparticles drove microglial polarization from a pro‐inflammatory phenotype to an anti‐inflammatory phenotype under pathological conditions. Pretreatment of these nanoparticles changed the microglial function from detrimental to protective for the neuronal cells by blocking the pro‐inflammatory signaling. This work not only helps to elucidate the mechanism of ceria‐nanoparticle‐mediated neuroprotection but also provides a new strategy to rebalance the immuno‐environment by switching the equilibrium of the phenotypic activation of microglia.
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