Department of Biological Sciences, North Carolina State University, Raleigh, NC, USA.
Neurobiology Laboratory, National Institute of Environmental Health Sciences, NIH, Research Triangle Park, NC, USA.
J Neuroendocrinol. 2022 Jun;34(6):e13122. doi: 10.1111/jne.13122. Epub 2022 Apr 2.
The nucleus accumbens core is a key nexus within the mammalian brain for integrating the premotor and limbic systems and regulating important cognitive functions such as motivated behaviors. Nucleus accumbens core functions show sex differences and are sensitive to the presence of hormones such as 17β-estradiol (estradiol) in normal and pathological contexts. The primary neuron type of the nucleus accumbens core, the medium spiny neuron (MSN), exhibits sex differences in both intrinsic excitability and glutamatergic excitatory synapse electrophysiological properties. Here, we provide a review of recent literature showing how estradiol modulates rat nucleus accumbens core MSN electrophysiology within the context of the estrous cycle. We review the changes in MSN electrophysiological properties across the estrous cycle and how these changes can be mimicked in response to exogenous estradiol exposure. We discuss in detail recent findings regarding how acute estradiol exposure rapidly modulates excitatory synapse properties in nucleus accumbens core but not caudate-putamen MSNs, which mirror the natural changes seen across estrous cycle phases. These recent insights demonstrate the strong impact of sex-specific estradiol action upon nucleus accumbens core neuron electrophysiology.
伏隔核核心是哺乳动物大脑中整合运动前和边缘系统的关键枢纽,调节着重要的认知功能,如动机行为。伏隔核核心功能存在性别差异,并对激素如 17β-雌二醇(雌二醇)在正常和病理情况下的存在敏感。伏隔核核心的主要神经元类型,中等棘突神经元(MSN),在内在兴奋性和谷氨酸能兴奋性突触的电生理特性方面表现出性别差异。在这里,我们回顾了最近的文献,展示了雌二醇如何在发情周期的背景下调节大鼠伏隔核核心 MSN 的电生理学。我们回顾了 MSN 电生理特性在发情周期内的变化,以及这些变化如何对外源性雌二醇暴露做出反应。我们详细讨论了最近的发现,即急性雌二醇暴露如何迅速调节伏隔核核心但不调节尾壳核 MSN 中的兴奋性突触特性,这与发情周期各阶段观察到的自然变化相吻合。这些新的见解表明,特定于性别的雌二醇作用对伏隔核核心神经元的电生理学有很大影响。