半影
缺血
神经保护
医学
氧化应激
药理学
机制(生物学)
再灌注损伤
冲程(发动机)
活性氧
神经科学
心脏病学
内科学
化学
生物
机械工程
哲学
生物化学
认识论
工程类
作者
Zhitao Hou,Jacob S. Brenner
出处
期刊:Redox biology
[Elsevier BV]
日期:2024-05-07
卷期号:73: 103185-103185
被引量:21
标识
DOI:10.1016/j.redox.2024.103185
摘要
During cerebral ischemia-reperfusion conditions, the excessive reactive oxygen species in the ischemic penumbra region, resulting in neuronal oxidative stress, constitute the main pathological mechanism behind ischemia-reperfusion damage. Swiftly reinstating blood perfusion in the ischemic penumbra zone and suppressing neuronal oxidative injury are key to effective treatment. Presently, antioxidants in clinical use suffer from low bioavailability, a singular mechanism of action, and substantial side effects, severely restricting their therapeutic impact and widespread clinical usage. Recently, nanomedicines, owing to their controllable size and shape and surface modifiability, have demonstrated good application potential in biomedicine, potentially breaking through the bottleneck in developing neuroprotective drugs for ischemic strokes. This manuscript intends to clarify the mechanisms of cerebral ischemia-reperfusion injury and provides a comprehensive review of the design and synthesis of antioxidant nanomedicines, their action mechanisms and applications in reversing neuronal oxidative damage, thus presenting novel approaches for ischemic stroke prevention and treatment.
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