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Neuroprotective effect of loganin against A beta(25-35)- induced injury via the NF-kappa B-dependent signaling pathway in PC12 cells

机译:loganin通过PC12细胞中NF-κB依赖性信号通路对Aβ(25-35)诱导的损伤的神经保护作用

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Amyloid-beta (A beta) protein, the main constituent of senile plaques, is believed to play a pivotal role in the pathogenesis of Alzheimer's disease (AD). AD is closely associated with inflammatory reactions which are considered to be responses to A beta deposition. The present study investigated the effect of loganin on A beta(25-35)-induced inflammatory damage and the underlying molecular mechanism of its neuroprotective action. Loganin predominantly prevented A beta(25-35)-stimulated cell death through suppressing ROS generation, and attenuating apoptosis by inhibiting caspase-3 activity and regulating cell cycle. Furthermore, loganin suppressed the level of TNF-alpha and protein expression of iNOS and COX-2 in A beta(25-35)-injured PC12 cells. These inhibitions appeared to correlate with the suppression of NF-kappa B activation by loganin, as pretreating cells with loganin blocked the translocation of NF-kappa B into the nuclear compartment and degradation of the inhibitory subunit I kappa B. Loganin substantially inhibited phosphorylation of MAPKs including ERK1/2, p38 and JNK, which are closely related to regulation of NF-kappa B activation. Taken together, the results implied that loganin attenuated neuroinflammatory responses through the inactivation of NF-kappa B by NF-kappa B dependent inflammatory pathways and phosphorylation of MAPK in A beta(25-35)-induced PC12 cells.
机译:淀粉样蛋白(A beta)蛋白,老年斑的主要成分,被认为在阿尔茨海默氏病(AD)的发病机理中起着关键作用。 AD与被认为是对Aβ沉积的反应的炎症反应密切相关。本研究调查了loganin对A beta(25-35)诱导的炎症损伤的影响及其潜在神经保护作用的分子机制。 Loganin主要通过抑制ROS生成并通过抑制caspase-3活性和调节细胞周期来防止A beta(25-35)刺激的细胞死亡。此外,loganin抑制Aβ(25-35)损伤的PC12细胞中TNF-α的水平以及iNOS和COX-2的蛋白表达。这些抑制作用似乎与用loganin抑制NF-κB活化有关,因为用loganin预处理的细胞可阻止NF-kappa B进入核区室并抑制抑制性亚基I kappa B的降解。loganin基本上抑制了MAPK的磷酸化包括ERK1 / 2,p38和JNK,它们与NF-κB激活的调节密切相关。两者合计,结果暗示,loganin通过依赖NF-κB的炎性途径使NF-κB失活和Aβ(25-35)诱导的PC12细胞中MAPK磷酸化来减弱神经炎症反应。

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