Department of Psychology, University of Wisconsin-Milwaukee, Milwaukee, WI 53211, United States of America.
Horm Behav. 2019 May;111:96-104. doi: 10.1016/j.yhbeh.2019.01.002. Epub 2019 Jan 17.
Although 17β-estradiol (E) is known to regulate hippocampal function, the specific contributions of hippocampally-synthesized E remain unclear. Infusion of the aromatase inhibitor letrozole into the dorsal hippocampus (DH) of ovariectomized mice disrupts object recognition and object placement memory consolidation, suggesting that DH-synthesized E is essential for memory. However, the role of DH-synthesized E in memory among male rodents is unknown. Here, we examined effects of aromatase inhibition on memory consolidation in male mice. Intact and gonadectomized mice were infused with vehicle or letrozole into the DH immediately post-training in object placement and object recognition tasks. Letrozole blocked memory in both tasks among gonadectomized males only, suggesting that circulating androgens, or a rise in hippocampal androgens due to aromatase inhibition, may support memory consolidation in intact males. To test this hypothesis, intact males were infused with the androgen receptor antagonist flutamide into the DH after object training. A dose-dependent impairment was observed in both tasks, indicating that blocking androgen signaling can impair memory consolidation. To test if hippocampal androgen receptor activation protected intact males from the impairing effects of letrozole, a non-impairing dose of flutamide was co-infused with letrozole. Co-administration of both drugs blocked object placement and object recognition memory consolidation, demonstrating that letrozole impairs memory in intact males only if androgen receptors are blocked. Together, these data suggest that DH-synthesized E and androgen receptor activation may work in concert to mediate memory consolidation in intact males, such that androgen receptor activation protects against memory impairments caused by aromatase inhibition.
虽然 17β-雌二醇(E)已知可调节海马功能,但海马合成的 E 的具体贡献仍不清楚。在去卵巢小鼠的背侧海马(DH)中输注芳香酶抑制剂来曲唑会破坏物体识别和物体放置记忆的巩固,这表明 DH 合成的 E 对记忆至关重要。然而,DH 合成的 E 在雄性啮齿动物记忆中的作用尚不清楚。在这里,我们研究了芳香酶抑制对雄性小鼠记忆巩固的影响。在物体放置和物体识别任务中,用载体或来曲唑立即对完整和去势的小鼠进行 DH 输注。只有去势雄性小鼠的来曲唑阻断了两种任务的记忆,这表明循环雄激素,或由于芳香酶抑制而导致的海马雄激素升高,可能支持完整雄性的记忆巩固。为了验证这一假设,我们在物体训练后将雄激素受体拮抗剂氟他胺输注到 DH 中。在两种任务中均观察到剂量依赖性的损伤,表明阻断雄激素信号可能会损害记忆巩固。为了测试海马雄激素受体激活是否能使完整雄性免受来曲唑的损害作用,我们用氟他胺的非损伤剂量与来曲唑共同输注。两种药物的共同给药阻断了物体放置和物体识别记忆的巩固,表明只有当雄激素受体被阻断时,来曲唑才会损害完整雄性的记忆。综上所述,这些数据表明,DH 合成的 E 和雄激素受体激活可能协同作用,介导完整雄性的记忆巩固,从而使雄激素受体激活防止芳香酶抑制引起的记忆损伤。