Nilsen J, Mor G, Naftolin F
Department of Obstetrics and Gynecology and Center for Reproductive Biology, Yale University School of Medicine, New Haven, Connecticut 06520-8063, USA.
Menopause. 1998 Winter;5(4):211-6.
It is well established that gonadal steroids have direct in vivo and in vitro effects on neurons. To further study these effects, we used rat PC 12 cells to examine the effects of estrogen receptor (ER) ligands on neuronal morphology.
PC 12 cells constitutively express ER beta, but only strongly express ER alpha after long-term priming with nerve growth factor (NGF). We therefore primed PC12 cells with NGF for 14 days before testing them for estradiol (10(-9)M)- and/or raloxifene (10(-7) M)-induced neurite growth. Neurite growth was assessed by quantitative light microscopy. As control, ER status of the PC12 cells was assessed by reverse transcription-polymerase chain reaction (RT-PCR).
In this study, both estradiol and raloxifene induced the outgrowth of neurites in NGF-treated PC 12 cells (p < 0.05). The combination of estradiol- and raloxifene-induced neurite growth was statistically greater than the effects of either agent alone. RT-PCR confirms that NGF-treated PC 12 cells express both ERalpha and ERbeta.
This report is the first on the neurotrophic effect of raloxifene. At 10(-7) M, raloxifene's effect equaled that of estradiol; moreover, raloxifene did not block the neurite growth of simultaneously estradiol-treated PC 12 cells, despite its functional antiestrogenic effects in vivo. We conclude that raloxifene is estrogen agonistic in this animal model and therefore studies are warranted to delineate the relationship between steroidal estrogen and raloxifene.
性腺类固醇对神经元具有直接的体内和体外作用,这一点已得到充分证实。为了进一步研究这些作用,我们使用大鼠嗜铬细胞瘤(PC12)细胞来检测雌激素受体(ER)配体对神经元形态的影响。
PC12细胞组成性表达雌激素受体β(ERβ),但仅在经神经生长因子(NGF)长期预处理后才强烈表达雌激素受体α(ERα)。因此,我们在用NGF预处理PC12细胞14天后,检测它们对雌二醇(10⁻⁹M)和/或雷洛昔芬(10⁻⁷M)诱导的神经突生长的反应。通过定量光学显微镜评估神经突生长情况。作为对照,通过逆转录聚合酶链反应(RT-PCR)评估PC12细胞的ER状态。
在本研究中,雌二醇和雷洛昔芬均能诱导经NGF处理的PC12细胞长出神经突(p<0.05)。雌二醇和雷洛昔芬联合诱导的神经突生长在统计学上大于单独使用任何一种药物的效果。RT-PCR证实经NGF处理的PC-12细胞同时表达ERα和ERβ。
本报告首次阐述了雷洛昔芬的神经营养作用。在10⁻⁷M浓度下,雷洛昔芬的作用与雌二醇相当;此外,尽管雷洛昔芬在体内具有功能性抗雌激素作用,但它并未阻断同时用雌二醇处理的PC12细胞的神经突生长。我们得出结论,在该动物模型中雷洛昔芬具有雌激素激动剂作用,因此有必要开展研究来阐明甾体雌激素与雷洛昔芬之间的关系。