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Androgen-Dependent Excitability of Mouse Ventral Hippocampal Afferents to Nucleus Accumbens Underlies Sex-Specific Susceptibility to Stress

机译:小鼠腹侧海马传入物对伏隔核的雄激素依赖性兴奋性是性别特异性应激易感性的基础

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abstract_textpBACKGROUND: Depression affects women nearly twice as often as men, but the neurobiological underpinnings of this discrepancy are unclear. Preclinical studies in male mice suggest that activity of ventral hippocampus (vHPC) neurons projecting to the nucleus accumbens (NAc) regulates mood-related behavioral responses to stress. We sought to characterize this circuit in both sexes and to investigate its role in potential sex differences in models of depression./ppMETHODS: We used male and female adult C57BL/6J mice in the subchronic variable stress model to precipitate female-specific reduction in sucrose preference and performed gonadectomies to test the contributions of gonadal hormones to this stress response. In addition, ex vivo slice electrophysiology of transgenic Cre-inducible Rosa-eGFP-L10a mice in combination with retrograde viral tracing to identify circuits was used to test contributions of gonadal hormones to sex differences in vHPC afferents. Finally, we used an intersecting viral DREADD (designer receptor exclusively activated by designer drugs) strategy to manipulate vHPC-NAc excitability directly in awake behaving mice./ppRESULTS: We show a testosterone-dependent lower excitability in male versus female vHPC-NAc neurons and corresponding testosterone-dependent male resilience to reduced sucrose preference after subchronic variable stress. Importantly, we show that long-term DREADD stimulation of vHPC-NAc neurons causes decreased sucrose preference in male mice after subchronic variable stress, whereas DREADD inhibition of this circuit prevents this effect in female mice./ppCONCLUSIONS: We demonstrate a circuit-specific sex difference in vHPC-NAc neurons that is dependent on testosterone and causes susceptibility to stress in female mice. These data provide a substantive mechanism linking gonadal hormones to cellular excitability and anhedonia-a key feature in depressive stress./p/abstract_text
机译:背景:抑郁症对女性的影响几乎是男性的两倍,但这种差异的神经生物学基础尚不清楚。雄性小鼠的临床前研究表明,投射到伏隔核 (NAc) 的腹侧海马 (vHPC) 神经元的活动调节与情绪相关的压力行为反应。我们试图在两性中表征这种回路,并研究其在抑郁症模型中潜在性别差异中的作用。方法: 我们在亚慢性可变应激模型中使用雄性和雌性成年 C57BL/6J 小鼠来促成雌性蔗糖偏好的特异性降低,并进行性腺切除术以测试性腺激素对这种应激反应的贡献。此外,转基因Cre诱导型Rosa-eGFP-L10a小鼠的离体切片电生理学结合逆行病毒示踪鉴定电路,用于测试性腺激素对vHPC传入者性别差异的贡献。最后,我们使用交叉病毒 DREADD(由设计药物独家激活的设计受体)策略直接在清醒行为小鼠中操纵 vHPC-NAc 兴奋性。结果:我们发现男性与女性 vHPC-NAc 神经元的睾酮依赖性兴奋性较低,并且相应的睾酮依赖性男性在亚慢性可变应激后对蔗糖偏好降低的弹性。重要的是,我们发现vHPC-NAc神经元的长期DREADD刺激导致亚慢性可变应激后雄性小鼠的蔗糖偏好降低,而该回路的DREADD抑制在雌性小鼠中阻止了这种影响。结论:我们证明了vHPC-NAc神经元中电路特异性的性别差异,该差异依赖于睾酮,并导致雌性小鼠对压力的易感性。这些数据提供了一种实质性机制,将性腺激素与细胞兴奋性和快感缺乏联系起来,这是抑郁应激的一个关键特征。

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