肉桂酸
神经毒性
化学
甲基乙二醛
SH-SY5Y型
PI3K/AKT/mTOR通路
蛋白激酶B
药理学
神经保护
生物化学
神经退行性变
KEAP1型
氧化应激
信号转导
抗氧化剂
细胞生物学
生物
酶
毒性
内科学
转录因子
神经母细胞瘤
细胞培养
医学
疾病
有机化学
基因
遗传学
作者
Marcos Roberto de Oliveira,Gustavo C. Ferreira,Patrícia Fernanda Schuck,Simone Morelo Dal Bosco
标识
DOI:10.1016/j.cbi.2015.11.003
摘要
Glycation, a process that occurs endogenously and generates advanced glycation end products (AGEs), presents an important role in cases of neurodegeneration, as for instance Alzheimer's disease (AD). Methylglyoxal (MG), a dicarbonyl compound, is the most potent inducer of AGEs, whose levels have been found increased in samples obtained from subjects suffering from AD. Moreover, MG induces protein cross-linking and redox impairment in vitro and in vivo. Carnosic acid (CA), a phenolic diterpene isolated from Rosmarinus officinalis, exerts protective effects in neuronal cells by increasing antioxidant defenses and detoxification systems. In the present work, we aimed to investigate whether there is a role for CA against MG-induced neurotoxicity. Data obtained here clearly demonstrate that CA pretreatment (1 μM for 12 h) caused cytoprotective effects and counteracted the damage elicited by MG in SH-SY5Y cells. CA inhibited loss of mitochondrial membrane polarity (MMP) and cytochrome c release from mitochondria, consequently blocking activation of pro-apoptotic caspase enzymes. Furthermore, CA alleviated MG-induced oxidative and nitrosative damage. CA prevented MG-dependent neurotoxicity by activating the PI3K/Akt/Nrf2 signaling pathway and the antioxidant enzymes modulated by Nrf2 transcription factor. Overall, the data presented here show the protective role of CA by its ability to counteract MG negative effects.
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