创伤性脑损伤
氧化铈
神经保护
医学
脂质过氧化
活力测定
药理学
抗氧化剂
麻醉
氧化应激
化学
体外
氧化物
内科学
生物化学
有机化学
精神科
作者
Dong-Wan Kang,Bong Geun,Jee Hoon Lee,Wookjin Yang,Seul Ki Ki,Ju Hee Han,Ha Yoon Cho,Eunchae Park,Sohyun Jeon,Seung‐Hoon Lee
标识
DOI:10.1016/j.nano.2022.102586
摘要
No medication has been approved for secondary injuries after traumatic brain injury (TBI). While free radicals are considered a major mediator of secondary injury, conventional antioxidants only have modest clinical efficacy. Here, we synthesized CX201 consisting of core cerium oxide nanoparticles coated with 6-aminocaproic acid and polyvinylpyrrolidone in aqueous phase. CX201 with 3.49 ± 1.11 nm of core and 6.49 ± 0.56 nm of hydrodynamic diameter showed multi-enzymatic antioxidant function. Owing to its excellent physiological stability and cell viability, CX201 had a neuroprotective effect in vitro. In a TBI animal model, an investigator-blinded randomized experiment showed a single intravenously injected CX201 significantly improved functional recovery compared to the control. CX201 reduced lipid peroxidation and inflammatory cell recruitment at the damaged brain. These suggest ultrasmall CX201 can efficiently reduce secondary brain injuries after TBI. Given the absence of current therapies, CX201 may be proposed as a novel therapeutic strategy for TBI.
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