首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Mitochondrial medicine: neuroprotection and life extension by the new amphiphilic nitrone LPBNAH acting as a highly potent antioxidant agent.
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Mitochondrial medicine: neuroprotection and life extension by the new amphiphilic nitrone LPBNAH acting as a highly potent antioxidant agent.

机译:线粒体药物:新型两亲性硝酮LPBNAH作为一种高效抗氧化剂,可保护神经并延长生命。

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摘要

The search for effective treatments that prevent oxidative stress associated with premature ageing and neurodegenerative diseases is an important area of neurochemical research. As age- and disease-related oxidative stress is frequently associated with mitochondrial dysfunction, amphiphilic antioxidant agents of high stability and selectivity that target these organelles can provide on-site protection. Such an amphiphilic nitrone protected human neuroblastoma cells at low micromolar concentrations against oxidative damage and death induced by exposure to the beta-amyloid peptide, hydrogen peroxide and 3-hydroxykynurenine. Daily administration of the antioxidant at a concentration of only 5 mum significantly increased the lifespan of the individually cultured rotifer Philodina acuticornis odiosa Milne. This compound is unique in its exceptional anti-ageing efficacy, being one order of magnitude more potent than any other compound previously tested on rotifers. The nitrone protected these aquatic animalsagainst the lethal toxicity of hydrogen peroxide and doxorubicin and greatly enhanced their survival when co-administered with these oxidotoxins. These findings indicate that amphiphilic antioxidants have a great potential as neuroprotective agents in preventing the death of cells and organisms exposed to enhanced oxidative stress and damage.
机译:寻求防止与过早衰老和神经退行性疾病相关的氧化应激的有效治疗方法是神经化学研究的重要领域。由于与年龄和疾病相关的氧化应激通常与线粒体功能障碍有关,针对这些细胞器的具有高稳定性和选择性的两亲性抗氧化剂可以提供现场保护。这样的两亲性硝酸盐在低微摩尔浓度下保护人神经母细胞瘤细胞免受因暴露于β-淀粉样肽,过氧化氢和3-羟基犬尿氨酸引起的氧化损伤和死亡。每天仅以5微米的浓度施用抗氧化剂,可显着提高单独培养的轮虫Philodina acuticornis odiosa Milne的寿命。这种化合物的独特之处在于其出色的抗衰老功效,比以前在轮虫上测试过的任何其他化合物的效力都高一个数量级。硝酮与过氧​​化氢和阿霉素的致命毒性保护了这些水生动物,并与这些氧化毒素共同施用时大大提高了它们的存活率。这些发现表明,两亲性抗氧化剂作为神经保护剂在防止暴露于氧化应激和损伤加剧的细胞和生物死亡方面具有巨大潜力。

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