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In vitro and in vivo study of effects of fermented soybean product (chungkookjang) on NGF secretion ability and NGF receptor signaling pathway

机译:发酵大豆制品(chungkookjang)对NGF分泌能力和NGF受体信号通路影响的体内外研究

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摘要

In order to investigate the effects of a fermented soybean product (Chungkookjang, CKJ) on nerve growth factor (NGF) metabolism, NGF secretion ability and its related signaling pathway were analyzed in B35 neuronal cells and the Tg2576 mouse model of Alzheimer's disease (AD). In B35 cells, the concentration of NGF significantly increased upon treatment with Taegwang (TG)-CKJ and Shinhwa (SH)-CKJ extracts compared with vehicle. Further, a significant increase in PC12 cell length as well as the phsophorylation levels of TrkA and Akt, which are members of a high affinity NGF receptor signaling pathway, were observed after treatment with TG-CKJ and SH-CKJ conditional medium (CM). On the other hand, there was no difference in activation of the NGF receptor p75NTR signaling pathway between vehicle and all CKJ treated groups. In Tg2576 mice showing early stage of AD, the concentrations of NGF in the serum and brain were reduced compared with those in Non-Tg mice. Treatment of Tg2576 mice with SH-CKJ, which contains high concentrations of total flavonoids and phenolic compounds, for 8 weeks dramatically recovered the NGF level to that of Non-Tg mice. Furthermore, the low phosphorylation levels of TrkA and Erk in the NGF receptor TrkA signaling pathway were rapidly recovered to those of Non-Tg mice after SH-CKJ treatment in vehicle treated Tg2576 mice, whereas the phosphorylation level of Akt was maintained at a constant level. These results suggest that CKJ may stimulate NGF secretion ability as well as the NGF receptor TrkA signaling pathway in PC12 cells and Tg2576 mice.
机译:为了研究发酵大豆产品(Chungkookjang,CKJ)对神经生长因子(NGF)代谢的影响,分析了B35神经元细胞和阿尔茨海默氏病(AD)的Tg2576小鼠模型中NGF的分泌能力及其相关的信号传导途径。 。在B35细胞中,与媒介物相比,用Taegwang(TG)-CKJ和Shinhwa(SH)-CKJ提取物处理后,NGF的浓度显着增加。此外,用TG-CKJ和SH-CKJ条件培养基(CM)处理后,观察到PC12细胞长度以及TrkA和Akt的磷酸化水平显着增加,而TrkA和Akt是高亲和力NGF受体信号通路的成员。另一方面,赋形剂与所有CKJ治疗组之间NGF受体p75 NTR 信号通路的激活没有差异。在显示AD早期的Tg2576小鼠中,与非Tg小鼠相比,血清和脑中NGF的浓度降低。用SH-CKJ处理Tg2576小鼠(其中含有高浓度的总类黄酮和酚类化合物),持续8周可显着恢复NGF的水平至Non-Tg小鼠。此外,在媒介物处理的Tg2576小鼠中,SH-CKJ处理后,NGF受体TrkA信号传导途径中的TrkA和Erk的低磷酸化水平迅速恢复为非Tg小鼠,而Akt的磷酸化水平保持恒定。 。这些结果表明CKJ可能刺激PC12细胞和Tg2576小鼠的NGF分泌能力以及NGF受体TrkA信号通路。

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