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减少管状纹状体局部雌激素的合成可促进雌性小鼠对同性气味的吸引。

Reducing local synthesis of estrogen in the tubular striatum promotes attraction to same-sex odors in female mice.

机构信息

University of Florida, Department of Pharmacology & Therapeutics, Center for Smell and Taste, Center for Addiction Research and Education, 1200 Newell Dr., Gainesville, FL 32610, USA.

University of Florida, Department of Pharmacology & Therapeutics, Center for Smell and Taste, Center for Addiction Research and Education, 1200 Newell Dr., Gainesville, FL 32610, USA.

出版信息

Horm Behav. 2022 Apr;140:105122. doi: 10.1016/j.yhbeh.2022.105122. Epub 2022 Jan 29.

Abstract

Brain-derived 17β-estradiol (E2) confers rapid effects on neural activity. The tubular striatum (TuS, also called the olfactory tubercle) is both capable of local E2 synthesis due to its abundant expression of aromatase and is a critical locus for odor-guided motivated behavior and odor hedonics. TuS neurons also contain mRNA for estrogen receptors α, β, and the G protein-coupled estrogen receptor. We demonstrate here that mRNA for estrogen receptors appears to be expressed upon TuS dopamine 1 receptor-expressing neurons, suggesting that E2 may play a neuromodulatory role in circuits which are important for motivated behavior. Therefore, we reasoned that E2 in the TuS may influence attraction to urinary odors which are highly attractive. Using whole-body plethysmography, we examined odor-evoked high-frequency sniffing as a measure of odor attaction. Bilateral infusion of the aromatase inhibitor letrozole into the TuS of gonadectomized female adult mice induced a resistance to habituation over successive trials in their investigatory sniffing for female mouse urinary odors, indicative of an enhanced attraction. All males displayed resistance to habituation for female urinary odors, indicative of enhanced attraction that is independent from E2 manipulation. Letrozole's effects were not due to group differences in basal respiration, nor changes in the ability to detect or discriminate between odors (both monomolecular odorants and urinary odors). Therefore, de novo E2 synthesis in the TuS impacts females' but not males' attraction to female urinary odors, suggesting a sex-specific influence of E2 in odor hedonics.

摘要

脑源性 17β-雌二醇(E2)对神经活动具有快速作用。管状纹状体(TuS,也称为嗅结节)由于其丰富的芳香酶表达而能够进行局部 E2 合成,并且是嗅觉导向的动机行为和嗅觉快感的关键部位。TuS 神经元还包含雌激素受体 α、β 和 G 蛋白偶联雌激素受体的 mRNA。我们在这里证明,雌激素受体的 mRNA 似乎在 TuS 多巴胺 1 受体表达神经元中表达,这表明 E2 可能在对动机行为很重要的回路中发挥神经调节作用。因此,我们推断 TuS 中的 E2 可能会影响对高度有吸引力的尿液气味的吸引力。我们使用全身 plethysmography 检查了作为气味吸引力的衡量标准的气味诱发的高频嗅探。双侧将芳香酶抑制剂来曲唑输注到去势成年雌性小鼠的 TuS 中,导致它们在探索雌性小鼠尿液气味时的调查性嗅探中对习惯化的连续试验产生抵抗,表明吸引力增强。所有雄性对雌性尿液气味的习惯化都具有抵抗性,表明吸引力增强,这与 E2 操作无关。来曲唑的作用不是由于组间在基础呼吸方面的差异,也不是由于检测或区分气味(单分子气味剂和尿液气味)的能力发生变化。因此,TuS 中内源性 E2 的合成会影响雌性而非雄性对雌性尿液气味的吸引力,这表明 E2 在嗅觉快感中具有性别特异性影响。

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