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首页> 外文期刊>Journal of Applied Phycology >Neuroprotective effects of fucoxanthin and its derivative fucoxanthinol from the phaeophyte Undaria pinnatifida attenuate oxidative stress in hippocampal neurons
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Neuroprotective effects of fucoxanthin and its derivative fucoxanthinol from the phaeophyte Undaria pinnatifida attenuate oxidative stress in hippocampal neurons

机译:Fucoxanthin及其衍生物豆嘌呤醇从肾上腺素内切提器的神经保护作用衰减海马神经元氧化胁迫

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摘要

Neuroprotective and neurotrophic supports are critical for neuronal survival, outgrowth, and functional activity in the degenerating brain where oxidative stress is a leading cause of neurological disorders. An ethanol extract of the phaeophyte Undaria pinnatifida (UPE) concentration dependently increased the viability of rat hippocampal neurons in both hypoxia-induced oxidative stress and normoxic conditions. UPE, at an optimal 15 mu gmL(-1), significantly reduced reactive oxygen species formation, DNA fragmentation, early and late apoptosis rates, and mitochondrial membrane dysfunction against hypoxia. In addition, the most active neuroprotectant from UPE was identified as fucoxanthin (Fx) by reverse-phase high-pressure liquid chromatography (RP-HPLC) and H-1 NMR. Fucoxanthinol (FxOH), a metabolite after enzymatic hydrolysis of Fx, significantly provided protection from neurite breakage and also enhanced the length of neurites in hypoxia cultures. The findings suggest that UPE and its active component Fx as well as FxOH have the ability to protect central nervous system neurons through anti-excitatory and anti-oxidative actions.
机译:神经保护和神经营养的载体对于氧化胁迫是神经系统疾病的主要原因的解生脑中的神经元存活,产物和功能活性至关重要。 Pheaeophyte undariapatifida(UPE)浓度的乙醇提取物依赖地增加了大鼠海马神经元在缺氧诱导的氧化应激和常氧条件下的活力。 UPE,在最佳的15μgml(-1),显着降低的反应性氧物种形成,DNA碎片,早期和晚期凋亡率,以及对缺氧的线粒体膜功能障碍。此外,通过反相高压液相色谱(RP-HPLC)和H-1 NMR,将来自UPE的最活跃的神经保护剂被鉴定为粪豆天(FX)。 Fucoxanthinol(FXOH),酶法水解后的代谢物,显着提供了神经突破裂的保护,并且还增强了缺氧培养中神经毒素的长度。研究结果表明,UPE及其活性成分FX以及FXOH通过抗兴奋性和抗氧化作用来保护中枢神经系统神经元。

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