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首页> 外文期刊>IBRO Reports >Tea polyphenols attenuate staurosporine-induced cytotoxicity and apoptosis by modulating BDNF-TrkB/Akt and Erk1/2 signaling axis in hippocampal neurons
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Tea polyphenols attenuate staurosporine-induced cytotoxicity and apoptosis by modulating BDNF-TrkB/Akt and Erk1/2 signaling axis in hippocampal neurons

机译:茶多酚通过调节海马神经元的BDNF-TRKB / AKT和ERK1 / 2信号轴来衰减Staurosporine诱导的细胞毒性和细胞凋亡

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Tea polyphenols (TP) are the major ingredients in tea beverages that display health-benefits including anti-oxidation, anti-inflammation, anti-aging, attenuating blood pressure and deflating. In this study, we investigated the neuroprotective effects of TP to attenuate staurosporine (STS)-induced cytotoxicity. Rat hippocampal neurons were isolated, cultured and incubated with STS to induce neurite collapse and apoptosis, however, the medication of TP eliminated these adverse effects and maintained the morphology of neurons. STS decreased the expression of pro-BDNF, downregulated the TrkB/Akt/Bcl-2 signaling axis and promoted the activation of Erk1/2 and caspase-3. In contrast, TP rescued the expression of pro-BDNF and antagonistically restored the biochemistry of aforementioned signaling effectors. Consistently, the activity of TP can be attenuated by the inhibition of TrkB or Akt by small chemicals K252a and LY294002. Therefore, BDNF-TrkB and Akt signaling axis is essential for TP-mediated neuroprotective effects. In summary, TP showed beneficial effects to protect neurons from exogenous insults such as STS-induced neural cytotoxicity and cell death.
机译:茶多酚(TP)是茶禽的主要成分,显示出健康益处,包括抗氧化,抗炎,抗衰老,衰减血压和偏转。在这项研究中,我们研究了TP衰减Staurosporine(STS)诱导的细胞毒性的神经保护作用。分离大鼠海马神经元,培养并与STS培养并孵育,以诱导神经突塌陷和细胞凋亡,然而,TP的药物消除了这些不利影响并保持了神经元的形态。 STS降低了Pro-BDNF的表达,下调了TRKB / AKT / BCL-2信号轴并促进了ERK1 / 2和Caspase-3的活化。相比之下,TP救出了Pro-BDNF的表达,并拮抗恢复了上述信号效应的生物化学。始终如一地,TP的活性可以通过小化学品K252A和LY294002抑制TRKB或AKT来衰减。因此,BDNF-TRKB和AKT信号轴对于TP介导的神经保护作用至关重要。总之,TP对保护神经元免受外源性侮辱的有益效果,例如STS诱导的神经细胞毒性和细胞死亡。

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