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通过激活 ERK 通路增加神经营养因子释放,从而提高培养的胚胎大鼠神经元细胞中荜澄茄素的神经营养活性。

Neurotrophic activity of obovatol on the cultured embryonic rat neuronal cells by increase of neurotrophin release through activation of ERK pathway.

机构信息

College of Pharmacy, Chungbuk National University, 12 Geashin-dong, Heungduk-gu, Cheongju, Chungbuk 361-763, Republic of Korea.

出版信息

Eur J Pharmacol. 2010 Dec 15;649(1-3):168-76. doi: 10.1016/j.ejphar.2010.09.029. Epub 2010 Sep 21.

Abstract

Previously, we found that obovatol, a lignan compound isolated from Magnolia officinalis, has anti-cancer, anti-inflammatory, and anxiolytic effects. Recent studies showed that honokiol, magnolol, and 4-O-methylhonokiol, lignin compounds isolated from the Magnolia family have neurotrophic activity. In this study, we examined whether or not obovatol also exhibits neurite-promoting effects on rat embryonic neuronal cells. Obovatol increased neurite outgrowth in a concentration-dependent manner. Consistent with the neurite outgrowth effect, the expression of neurite differentiation markers also increased in response to obovatol. We also found that obovatol increased levels of NGF and BDNF released into the culture medium. In addition, the combination of low concentrations of obovatol (1 and 2 μM) with NGF (50 ng/ml) or with BDNF (10 ng/ml) greatly enhanced neurite outgrowth. Subsequently, we found that obovatol increased phosphorylation of ERK. However, the neurite outgrowth, and NGF and BDNF release induced by obovatol were prevented by an ERK-specific inhibitor. These results suggest that obovatol promotes neurite outgrowth due to the increased release of neurotrophic factors via activation of the ERK pathway.

摘要

先前,我们发现从厚朴中分离得到的木脂素化合物厚朴酚具有抗癌、抗炎和抗焦虑作用。最近的研究表明,从木兰科植物中分离得到的厚朴酚、和厚朴酚和 4-O-甲基厚朴酚具有神经营养活性。在这项研究中,我们检查了厚朴酚是否也对大鼠胚胎神经元细胞表现出促进神经突生长的作用。厚朴酚呈浓度依赖性地增加神经突生长。与神经突生长效应一致,神经突分化标志物的表达也随着厚朴酚的作用而增加。我们还发现,厚朴酚增加了释放到培养基中的 NGF 和 BDNF 的水平。此外,低浓度的厚朴酚(1 和 2 μM)与 NGF(50ng/ml)或 BDNF(10ng/ml)联合使用极大地增强了神经突生长。随后,我们发现厚朴酚增加了 ERK 的磷酸化。然而,厚朴酚诱导的神经突生长、NGF 和 BDNF 释放被 ERK 特异性抑制剂所阻断。这些结果表明,厚朴酚通过激活 ERK 通路增加神经营养因子的释放从而促进神经突生长。

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