College of Pharmacy, Chungbuk National University, 12 Geashin-dong, Heungduk-gu, Cheoungju, Chungbuk 361-763, Republic of Korea.
Neurochem Res. 2009 Dec;34(12):2251-60. doi: 10.1007/s11064-009-0024-7.
Compounds isolated from Magnolia officinalis such as magnolol, honokiol and obovatol exhibit several pharmacological effects on CNS including depressant, anxiolytic and anticonvulsant effects, as well as neuroprotective effects against chemical and heat damages. Recently, honokiol was found to have a neurotrophic effect in fetal rat cortical neurons. In the present study, we show that 4-O-methylhonokiol, a novel compound from Magnolia officinalis, promotes neurite outgrowth in a concentration- dependent manner in rat embryonic neuronal cells. In parallel with the neurite outgrowth activity, the expression of neurite outgrowth marker proteins is also increased by treatment with 4-O-methylhonokiol. We also found that 4-O-methylhonokiol promotes the release of NGF and BDNF into cell culture medium. In addition, lower concentration of 4-O-methylhonokiol (1 and 2 lM) further enhanced neurite outgrowth and expression of neurite outgrowth marker proteins in the presence of NGF (50 ng/ml) or BDNF (10 ng/ml). Subsequently, we found that 4-O-methylhonokiol activates ERK in a concentration- dependent manner. However, the neurite outgrowth activity and the NGF and BDNF release induced by 4-O-methylhonokiol are suppressed by an ERK-specific inhibitor. These results suggest that 4-O-methylhonokiol has the ability to induce neurite outgrowth via the increase of neurotrophic factor levels through ERK activation.
厚朴中分离得到的厚朴酚、和厚朴酚、厚朴醇等化合物对中枢神经系统具有多种药理作用,包括抑制作用、抗焦虑作用和抗惊厥作用,以及对化学和热损伤的神经保护作用。最近,发现和厚朴酚对胎鼠皮质神经元具有神经营养作用。在本研究中,我们表明,厚朴中的一种新化合物 4-O-甲基厚朴酚以浓度依赖的方式促进大鼠胚胎神经元细胞的突起生长。随着突起生长活性的增加,4-O-甲基厚朴酚处理还增加了突起生长标记蛋白的表达。我们还发现 4-O-甲基厚朴酚促进 NGF 和 BDNF 释放到细胞培养基中。此外,较低浓度的 4-O-甲基厚朴酚(1 和 2 lM)在存在 NGF(50 ng/ml)或 BDNF(10 ng/ml)的情况下进一步增强了突起生长和突起生长标记蛋白的表达。随后,我们发现 4-O-甲基厚朴酚以浓度依赖的方式激活 ERK。然而,4-O-甲基厚朴酚诱导的突起生长活性和 NGF 和 BDNF 释放被 ERK 特异性抑制剂所抑制。这些结果表明,4-O-甲基厚朴酚通过 ERK 激活增加神经营养因子水平来诱导突起生长的能力。