Rodriguez-Echemendia Pedro L, Carelli Regina M
Department of Psychology & Neuroscience, University of North Carolina at Chapel Hill, Chapel Hill, NC 27599, United States.
Department of Psychology & Neuroscience, University of North Carolina at Chapel Hill, Chapel Hill, NC 27599, United States.
Behav Brain Res. 2025 Mar 5;480:115404. doi: 10.1016/j.bbr.2024.115404. Epub 2024 Dec 18.
Affective processing is important for guiding behavior and its dysfunction can lead to several psychiatric illnesses, including depression and substance use disorders. Conditioned taste aversion (CTA) is used to study learned shifts in affect, and taste reactivity (TR) can effectively track the hedonic properties of appetitive and aversive tastants before and after CTA. While the infralimbic cortex (IL) and its projections to the nucleus accumbens (NAc) shell play a key role in learned negative affect, this role is unique to males. Here, we sought to determine if the prelimbic cortex (PrL) to nucleus accumbens (NAc) core circuit, another prefrontal cortex-accumbens system, tracks innate versus learned negative affect using electrophysiological (local field potential, LFP) methods in male and female rats. As expected, CTA elicited a hedonic shift from an appetitive to an aversive TR profile, regardless of sex. However, time-frequency analyses revealed differential activity in the PrL and NAc core during innate and learned negative affect across sex. Specifically, we found that beta oscillations in the NAc core encode learned negative affect in males, while neither brain region seems to be selectively attuned to innate or learned aversion in females. Importantly, LFP functional connectivity (coherence) indicated that the PrL-NAc core circuit does not track any aspect of learned negative affect in either sex but may be involved in innate aversion in males only. Collectively, these data provide a sex-specific understanding of real-time oscillatory signaling dynamics in the PrL and NAc core during innate versus learned negative affect.
情感加工对于指导行为很重要,其功能障碍会导致多种精神疾病,包括抑郁症和物质使用障碍。条件性味觉厌恶(CTA)用于研究情感的学习性转变,味觉反应性(TR)可以有效追踪CTA前后偏好性和厌恶性味觉刺激的享乐属性。虽然边缘下皮质(IL)及其向伏隔核(NAc)壳的投射在学习到的负面情感中起关键作用,但这一作用仅在雄性中具有独特性。在此,我们试图确定前额叶皮质(PrL)到伏隔核(NAc)核心的神经回路,即另一个前额叶皮质-伏隔核系统,是否在雄性和雌性大鼠中使用电生理方法(局部场电位,LFP)追踪先天与习得的负面情感。正如预期的那样,无论性别如何,CTA都会引发从偏好性到厌恶性TR模式的享乐性转变。然而,时频分析揭示了在先天和习得的负面情感过程中,PrL和NAc核心在不同性别中的活动差异。具体而言,我们发现NAc核心中的β振荡编码雄性中习得的负面情感,而在雌性中,似乎没有哪个脑区对先天或习得的厌恶有选择性的调节。重要的是,LFP功能连接性(相干性)表明,PrL-NAc核心神经回路在两性中均未追踪到习得负面情感的任何方面,但可能仅参与雄性的先天厌恶。总体而言,这些数据提供了对先天与习得负面情感过程中PrL和NAc核心实时振荡信号动态的性别特异性理解。