Douton Joaquin E, Carelli Regina M
Department of Psychology & Neuroscience, University of North Carolina, Chapel Hill, Chapel Hill, North Carolina.
Biol Psychiatry Glob Open Sci. 2023 Aug 29;4(1):354-362. doi: 10.1016/j.bpsgos.2023.08.011. eCollection 2024 Jan.
Negative affect is prevalent in psychiatric diseases such as depression and addiction. Projections from the infralimbic cortex (IL) to the nucleus accumbens shell (NAcSh) are causally linked to learned negative affect as 20 Hz optogenetic stimulation of this circuit reduces conditioned taste aversion (CTA) in male but not female rats. However, the prior study did not provide insight into how innate versus learned negative affect are processed in these areas across sex.
To address this issue, local field potential activity was simultaneously recorded in the IL and NAcSh in response to intraoral infusion of rewarding (saccharin) and aversive (quinine) tastants and following induction of a CTA in male and female Sprague Dawley rats.
Local field potential oscillatory activity within each brain region to saccharin varied across sex. In males, CTA increased IL resting-state power, which was correlated with the strength of the learned aversion, and reduced beta power and IL-NAcSh coherence. In females, CTA increased gamma power in the NAcSh. Similar effects were observed in males and females after CTA in theta-low gamma phase-amplitude coupling. Finally, while quinine produced similar effects in oscillatory power across sex, females showed differences in phase-amplitude coupling within the NAcSh that may be linked to aversion resistance.
We revealed sex-specific hedonic processing in the IL and NAcSh and how oscillatory signaling is disrupted in learned negative affect, revealing translationally relevant insight into potential treatment strategies that can help to reduce the deleterious effects of learned negative affect in psychiatric illnesses.
消极情绪在抑郁症和成瘾等精神疾病中普遍存在。从边缘下皮质(IL)到伏隔核壳(NAcSh)的投射与习得性消极情绪存在因果联系,因为对该神经回路进行20赫兹的光遗传学刺激可减少雄性而非雌性大鼠的条件性味觉厌恶(CTA)。然而,先前的研究并未深入探讨在这些区域中,先天与习得的消极情绪在不同性别中是如何被处理的。
为了解决这个问题,在雄性和雌性斯普拉格-道利大鼠中,对口腔内注入奖励性(糖精)和厌恶性(奎宁)味觉刺激物做出反应时,以及在诱导CTA后,同时记录IL和NAcSh中的局部场电位活动。
每个脑区内对糖精的局部场电位振荡活动因性别而异。在雄性中,CTA增加了IL静息状态功率,这与习得性厌恶的强度相关,并降低了β功率和IL-NAcSh连贯性。在雌性中,CTA增加了NAcSh中的γ功率。在CTA后的θ-低γ相位-振幅耦合中,雄性和雌性也观察到类似的效应。最后,虽然奎宁在不同性别中对振荡功率产生了类似的影响,但雌性在NAcSh内的相位-振幅耦合存在差异,这可能与厌恶抵抗有关。
我们揭示了IL和NAcSh中性别特异性的享乐加工,以及振荡信号在习得性消极情绪中是如何被破坏的,这为潜在的治疗策略提供了与转化相关的见解,有助于减少习得性消极情绪在精神疾病中的有害影响。