Morgan Todd E, Finch Caleb E
Davis School of Gerontology, Department of Biological Sciences, Dornsife College, University of Southern California Los Angeles, CA, USA.
Front Aging Neurosci. 2015 Sep 29;7:179. doi: 10.3389/fnagi.2015.00179. eCollection 2015.
In a perimenopausal model of middle-aged rats, the astrocyte estrogen receptor-alpha (ERa): ER-beta (ERb) ratio increased with the onset of acyclicity (constant estrus, CE) in association with impaired neurotrophic responses to estradiol (E2). We report additional data on irregular cycling (IR) from this study of 9 month old perimenopausal subgroups. In particular, irregular cyclers (IR) also show increased ERa:ERb ratio in cerebral cortex astrocytes comparable to acyclic individuals in CE. In mixed glial cultures from these same cycling subgroups, the E2-dependent neurotrophic activity and glial fibrillary acidic protein (GFAP) repression by E2 were impaired in IR to the same degree as in CE-derived glia. The greater importance of cycling status than age during the perimenopause to astrocyte ERs are attributable to individual variations of the residual ovarian follicle pool, which determine the onset of acyclicity. The corresponding loss of E2-dependent GFAP repression and E2-dependent neurotrophic activity add further to the inverse relationship of GFAP expression and astrocyte neurotrophic activity across aging in both sexes. These findings are relevant to impairments of spatial learning and of hippocampal long-term potentiation during the onset of IR in middle-aged rats, and to perimenopausal factors mediating the higher risk of women for Alzheimer disease.
在中年大鼠围绝经期模型中,随着无排卵周期(持续发情,CE)的开始,星形胶质细胞雌激素受体α(ERα):雌激素受体β(ERβ)的比值升高,同时对雌二醇(E2)的神经营养反应受损。我们报告了这项针对9个月大围绝经期亚组研究中关于不规则周期(IR)的更多数据。特别地,不规则周期者(IR)在大脑皮质星形胶质细胞中也表现出ERα:ERβ比值升高,与处于CE的无排卵个体相当。在来自这些相同周期亚组的混合神经胶质细胞培养物中,IR中E2依赖的神经营养活性以及E2对胶质纤维酸性蛋白(GFAP)的抑制作用与CE来源的神经胶质细胞受损程度相同。围绝经期期间,周期状态比年龄对星形胶质细胞雌激素受体更为重要,这归因于残余卵巢卵泡池的个体差异,而这种差异决定了无排卵周期的开始。E2依赖的GFAP抑制作用和E2依赖的神经营养活性相应丧失,进一步加剧了两性衰老过程中GFAP表达与星形胶质细胞神经营养活性之间的负相关关系。这些发现与中年大鼠IR开始期间空间学习和海马体长期增强功能的损伤有关,也与介导女性患阿尔茨海默病风险较高的围绝经期因素有关。