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Temporal and bidirectional influences of estradiol on voluntary wheel running in adult female and male rats.雌二醇对成年雌性和雄性大鼠自主转轮运动的时间和双向影响。
Horm Behav. 2020 Apr;120:104694. doi: 10.1016/j.yhbeh.2020.104694. Epub 2020 Jan 27.
2
Cell-Type- and Endocannabinoid-Specific Synapse Connectivity in the Adult Nucleus Accumbens Core.成年伏隔核核心中细胞类型和内源性大麻素特异突触连接。
J Neurosci. 2020 Jan 29;40(5):1028-1041. doi: 10.1523/JNEUROSCI.1100-19.2019. Epub 2019 Dec 12.
3
Metabotropic glutamate receptor subtype 5 (mGlu) is necessary for estradiol mitigation of light-induced anxiety behavior in female rats.代谢型谷氨酸受体 5 型(mGlu)对于雌二醇减轻雌性大鼠光诱导的焦虑行为是必需的。
Physiol Behav. 2020 Feb 1;214:112770. doi: 10.1016/j.physbeh.2019.112770. Epub 2019 Dec 9.
4
Effects of the estrous cycle and ovarian hormones on cue-triggered motivation and intrinsic excitability of medium spiny neurons in the Nucleus Accumbens core of female rats.发情周期和卵巢激素对雌性大鼠伏隔核核心区线索触发动机和中间神经元固有兴奋性的影响。
Horm Behav. 2019 Nov;116:104583. doi: 10.1016/j.yhbeh.2019.104583. Epub 2019 Sep 10.
5
Estradiol rapidly modulates excitatory synapse properties in a sex- and region-specific manner in rat nucleus accumbens core and caudate-putamen.雌二醇以性别和区域特异性方式快速调节大鼠伏隔核核心和尾壳核中的兴奋性突触特性。
J Neurophysiol. 2019 Sep 1;122(3):1213-1225. doi: 10.1152/jn.00264.2019. Epub 2019 Jul 17.
6
The estrous cycle modulates rat caudate-putamen medium spiny neuron physiology.动情周期调节大鼠尾壳核中间神经元生理。
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Biological Sex, Estradiol and Striatal Medium Spiny Neuron Physiology: A Mini-Review.生物性别、雌二醇与纹状体中等棘状神经元生理学:一篇综述短文
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Microglial dopamine receptor elimination defines sex-specific nucleus accumbens development and social behavior in adolescent rats.小胶质细胞多巴胺受体消除定义了青春期大鼠伏隔核的性别特异性发育和社会行为。
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10
Sex Differences and the Effects of Estradiol on Striatal Function.性别差异以及雌二醇对纹状体功能的影响。
Curr Opin Behav Sci. 2018 Oct;23:42-48. doi: 10.1016/j.cobeha.2018.03.007. Epub 2018 Mar 16.

17β-雌二醇和孕酮在调节成年雌性大鼠伏隔核核心中型多棘神经元电生理中的差异和协同作用。

Differential and synergistic roles of 17β-estradiol and progesterone in modulating adult female rat nucleus accumbens core medium spiny neuron electrophysiology.

机构信息

Graduate Program in Biology, North Carolina State University, Raleigh, North Carolina.

W.M. Keck Center for Behavioral Biology, North Carolina State University, Raleigh, North Carolina.

出版信息

J Neurophysiol. 2020 Jun 1;123(6):2390-2405. doi: 10.1152/jn.00157.2020. Epub 2020 May 13.

DOI:10.1152/jn.00157.2020
PMID:32401164
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7311720/
Abstract

Naturally occurring cyclical changes in sex steroid hormones such as 17β-estradiol and progesterone can modulate neuron function and behavior in female mammals. One example is the estrous cycle in rats, which is composed of multiple phases. We previously reported evidence of differences between estrous cycle phases in excitatory synapse and intrinsic electrophysiological properties of rat nucleus accumbens core (AcbC) medium spiny neurons (MSNs). The AcbC is a nexus between the limbic and premotor systems and is integral for controlling motivated and reward-associated behaviors and disorders, which are sensitive to the estrous cycle and hormones. The present study expands our prior findings by testing whether circulating levels of estradiol and progesterone correlate with changes in MSN electrophysiology across estrous cycle phases. As part of this project, the excitatory synapse and intrinsic excitability properties of MSNs in late proestrus of adult female rats were assessed. Circulating levels of estradiol correlate with resting membrane potential, the time constant of the membrane, and rheobase. Circulating levels of progesterone correlate with miniature excitatory postsynaptic current (mEPSC) frequency and amplitude. Circulating levels of estradiol and progesterone together correlate with mEPSC amplitude, resting membrane potential, and input resistance. The late proestrus phase features a prominent and unique decrease in mEPSC frequency. These data indicate that circulating levels of estradiol and progesterone alone or in combination interact with specific MSN electrophysiological properties, indicating differential and synergistic roles of these hormones. Broadly, these findings illustrate the underlying endocrine actions regarding how the estrous cycle modulates MSN electrophysiology. This research indicates that estradiol and progesterone act both differentially and synergistically to modulate neuron physiology in the nucleus accumbens core. These actions by specific hormones provide key data indicating the endocrine mechanisms underlying how the estrous cycle modulates neuron physiology in this region. Overall, these data reinforce that hormones are an important influence on neural physiology.

摘要

自然发生的性激素,如 17β-雌二醇和孕酮的周期性变化,可以调节雌性哺乳动物的神经元功能和行为。一个例子是大鼠的发情周期,它由多个阶段组成。我们之前报道了发情周期阶段大鼠伏隔核核心(AcbC)中间神经元(MSNs)兴奋性突触和内在电生理特性之间存在差异的证据。AcbC 是边缘系统和前运动系统之间的枢纽,对控制动机和与奖励相关的行为和障碍至关重要,这些行为和障碍对发情周期和激素敏感。本研究通过测试循环雌二醇和孕酮水平是否与发情周期各阶段 MSN 电生理变化相关,扩展了我们之前的发现。作为该项目的一部分,评估了成年雌性大鼠发情后期 MSN 的兴奋性突触和内在兴奋性特性。循环雌二醇水平与静息膜电位、膜时间常数和 rheobase 相关。循环孕酮水平与小兴奋性突触后电流(mEPSC)频率和幅度相关。循环雌二醇和孕酮水平一起与 mEPSC 幅度、静息膜电位和输入电阻相关。发情后期的特点是 mEPSC 频率明显而独特的下降。这些数据表明,单独或组合循环的雌二醇和孕酮与特定的 MSN 电生理特性相互作用,表明这些激素具有不同和协同的作用。总的来说,这些发现说明了发情周期调节 MSN 电生理的潜在内分泌作用。本研究表明,雌二醇和孕酮单独或协同作用,调节伏隔核核心神经元的生理学。这些特定激素的作用提供了关键数据,表明了发情周期调节该区域神经元生理学的内分泌机制。总的来说,这些数据强化了激素对神经生理学的重要影响。