神经保护
ALDH2
创伤性脑损伤
氧化应激
脂质过氧化
神经炎症
医学
炎症
神经科学
脑损伤
药理学
心理学
醛脱氢酶
内科学
生物
生物化学
精神科
基因
作者
Rachel C. Knopp,Sue Lee,Michael A. R. Hollas,Emily Nepomuceno,David González,Kevin A. Tam,Daniyal Aamir,Yueting Wang,Emily Pierce,Manel Benaissa,Gregory R. J. Thatcher
出处
期刊:Redox biology
[Elsevier BV]
日期:2020-03-02
卷期号:32: 101486-101486
被引量:24
标识
DOI:10.1016/j.redox.2020.101486
摘要
Oxidative stress induced by lipid peroxidation products (LPP) accompanies aging and has been hypothesized to exacerbate the secondary cascade in traumatic brain injury (TBI). Increased oxidative stress is a contributor to loss of neural reserve that defines the ability to maintain healthy cognitive function despite the accumulation of neuropathology. ALDH2−/− mice are unable to clear aldehyde LPP by mitochondrial aldehyde dehydrogenase-2 (Aldh2) detoxification and provide a model to study mild TBI (mTBI), therapeutic interventions, and underlying mechanisms. The ALDH2−/− mouse model presents with elevated LPP-mediated protein modification, lowered levels of PSD-95, PGC1-α, and SOD-1, and mild cognitive deficits from 4 months of age. LPP scavengers are neuroprotective in vitro and in ALDH2−/− mice restore cognitive performance. A single-hit, closed skull mTBI failed to elicit significant effects in WT mice; however, ALDH2−/− mice showed a significant inflammatory cytokine surge in the ipsilateral hemisphere 24 h post-mTBI, and increased GFAP cleavage, a biomarker for TBI. Known neuroprotective agents, were able to reverse the effects of mTBI. This new preclinical model of mTBI, incorporating significant perturbations in behavior, inflammation, and clinically relevant biomarkers, allows mechanistic study of the interaction of LPP and neurotrauma in loss of neural reserve.
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