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Analyzing the influence of BDNF heterozygosity on spatial memory response to 17 beta-estradiol

机译:分析BDNF杂合性对17β-雌二醇空间记忆反应的影响

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摘要

The recent use of estrogen-based therapies as adjunctive treatments for the cognitive impairments of schizophrenia has produced promising results; however the mechanism behind estrogen-based cognitive enhancement is relatively unknown. Brain-derived neurotrophic factor (BDNF) regulates learning and memory and its expression is highly responsive to estradiol. We recently found that estradiol modulates the expression of hippocampal parvalbumin-positive GABAergic interneurons, known to regulate neuronal synchrony and cognitive function. What is unknown is whether disruptions to the aforementioned estradiol-parvalbumin pathway alter learning and memory, and whether BDNF may mediate these events. Wild-type (WT) and BDNF heterozygous (+/-) mice were ovariectomized (OVX) at 5 weeks of age and simultaneously received empty, estradiol- or progesterone-filled implants for 7 weeks. At young adulthood, mice were tested for spatial and recognition memory in the Y-maze and novel-object recognition test, respectively. Hippocampal protein expression of BDNF and GABAergic interneuron markers, including parvalbumin, were assessed. WT OVX mice show impaired performance on Y-maze and novel-object recognition test. Estradiol replacement in OVX mice prevented the Y-maze impairment, a Behavioral abnormality of dorsal hippocampal origin. BDNF and parvalbumin protein expression in the dorsal hippocampus and parvalbumin-positive cell number in the dorsal CA1 were significantly reduced by OVX in WT mice, while E2 replacement prevented these deficits. In contrast, BDNF(+/-) mice showed either no response or an opposite response to hormone manipulation in both behavioral and molecular indices. Our data suggest that BDNF status is an important biomarker for predicting responsiveness to estrogenic compounds which have emerged as promising adjunctive therapeutics for schizophrenia patients.
机译:最近使用基于雌激素的疗法作为精神分裂症认知障碍的辅助治疗已产生了可喜的结果。然而,基于雌激素的认知增强的机制尚不清楚。脑源性神经营养因子(BDNF)调节学习和记忆,其表达对雌二醇高度敏感。我们最近发现,雌二醇调节海马小白蛋白阳性GABA能性神经元的表达,已知该神经元调节神经元的同步性和认知功能。未知的是上述雌二醇-小白蛋白途径的破坏是否会改变学习和记忆,以及BDNF是否可以介导这些事件。在5周龄时将野生型(WT)和BDNF杂合性(+/-)小鼠切除卵巢(OVX),并同时接受空的,雌二醇或孕酮填充的植入物7周。在成年后,分别在Y迷宫和新颖对象识别测试中测试了小鼠的空间记忆和识别记忆。评估了BDNF和GABA能级神经元标记(包括小白蛋白)的海马蛋白表达。 WT OVX小鼠在Y迷宫和新型物体识别测试中表现出受损。 OVX小鼠中的雌二醇替代可预防Y迷宫损伤,这是背侧海马起源的行为异常。在野生型小鼠中,OVX显着降低了背海马区的BDNF和小白蛋白蛋白表达以及背侧CA1的小白蛋白阳性细胞数量,而E2替代可预防这些缺陷。相反,BDNF(+/-)小鼠在行为和分子指标上均未显示对激素操作的反应或相反反应。我们的数据表明,BDNF状态是预测对雌激素化合物反应性的重要生物标志物,这些化合物已成为精神分裂症患者的有希望的辅助疗法。

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