Department of Pharmacology & Toxicology, Indiana University School of Medicine, Indianapolis, United States.
Stark Neurosciences Research Institute, Indiana University School of Medicine, Indianapolis, United States.
Elife. 2024 Aug 28;13:RP96534. doi: 10.7554/eLife.96534.
How does alcohol consumption alter synaptic transmission across time, and do these alcohol-induced neuroadaptations occur similarly in both male and female mice? Previously we identified that anterior insular cortex (AIC) projections to the dorsolateral striatum (DLS) are uniquely sensitive to alcohol-induced neuroadaptations in male, but not female mice, and play a role in governing binge alcohol consumption in male mice (Haggerty et al., 2022). Here, by using high-resolution behavior data paired with in-vivo fiber photometry, we show how similar levels of alcohol intake are achieved via different behavioral strategies across sexes, and how inter-drinking session thirst states predict future alcohol intakes in females, but not males. Furthermore, we show how presynaptic calcium activity recorded from AIC synaptic inputs in the DLS across 3 weeks of water consumption followed by 3 weeks of binge alcohol consumption changes across, fluid, time, sex, and brain circuit lateralization. By time-locking presynaptic calcium activity from AIC inputs to the DLS to peri-initiation of drinking events we also show that AIC inputs into the left DLS robustly encode binge alcohol intake behaviors relative to water consumption. These findings suggest a fluid-, sex-, and lateralization-dependent role for the engagement of AIC inputs into the DLS that encode binge alcohol consumption behaviors and further contextualize alcohol-induced neuroadaptations at AIC inputs to the DLS.
酒精消耗如何随时间改变突触传递,这些酒精引起的神经适应性在雄性和雌性小鼠中是否以相似的方式发生?我们之前已经确定,前岛叶皮层(AIC)投射到背外侧纹状体(DLS)对雄性而不是雌性小鼠的酒精诱导的神经适应性具有独特的敏感性,并且在雄性小鼠的 binge 饮酒行为中发挥作用(Haggerty 等人,2022 年)。在这里,通过使用高分辨率行为数据与体内光纤光度法相结合,我们展示了不同性别如何通过不同的行为策略达到相似水平的酒精摄入,以及饮酒期间的口渴状态如何预测雌性而非雄性的未来酒精摄入量。此外,我们展示了在 3 周的水消耗和 3 周的 binge 酒精消耗期间,从 DLS 中的 AIC 突触输入记录的突触前钙活动如何随时间、性别和大脑回路偏侧化而变化。通过将 AIC 输入到 DLS 的突触前钙活动与饮酒事件的开始时间进行时间锁定,我们还表明,相对于水消耗,AIC 输入到左 DLS 强烈编码 binge 酒精摄入行为。这些发现表明,AIC 输入到 DLS 的参与在液体、性别和偏侧化方面具有依赖性,可编码 binge 酒精摄入行为,并进一步将 DLS 上的 AIC 输入的酒精诱导的神经适应性置于背景中。