青春期间歇性乙醇暴露对大脑皮层神经元周围网和成年期副发光素表达的影响介导了行为的不灵活性。

IF 3 Q2 SUBSTANCE ABUSE
Emily D. K. Sullivan, Carol A. Dannenhoffer, Elizabeth B. Sutherland, Elena M. Vidrascu, Alexander Gómez-A, Charlotte A. Boettiger, Donita L. Robinson
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引用次数: 0

摘要

背景:青少年通常以酗酒的方式饮酒,这会导致长期的认知缺陷,包括行为灵活性降低。我们和其他人已经确定,青少年间歇性接触乙醇(AIE)会导致对行为灵活性非常重要的脑区神经元周围网(PNN)数量增加。然而,因接触乙醇而导致的神经化学变化是否在降低行为灵活性方面发挥了重要作用,目前尚不清楚:方法:我们测量了雌性和雄性大鼠在暴露于 AIE 或对照组并随后接受注意力集合转移任务(ASST)训练后,其眶额叶皮层(OFC)、前边缘皮层(PrL)、下边缘皮层(IL)和前岛叶皮层(AIC)中表达副白蛋白(PV+)的中间神经元和相关 PNN 的数量和大小。然后,我们进行了分析,以确定AIE诱导的PV和PNN测量变化是否在统计学上介导了AIE诱导的逆转学习行为缺陷:结果:我们证明,暴露于AIE会损害ASST逆转二(即回忆最初学习到的联想)的行为灵活性,并导致AIC中PV+细胞变小和PNN数量增加。有趣的是,与之前的报道相反,暴露于AIE后,PrL或IL中的PNN大小和数量没有改变。中介分析表明,AIE会改变行为的灵活性,至少部分是通过AIC中PV和PNN荧光测量的变化:本研究揭示了大鼠暴露于 AIE、神经改变和行为灵活性降低之间的重要联系,并强调了一种由 AIC 中 PV 和 PNN 测量变化组成的潜在新机制。未来的研究应探讨AIC内PNN退化对行为灵活性的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Effects of adolescent intermittent ethanol exposure on cortical perineuronal net and parvalbumin expression in adulthood mediate behavioral inflexibility

Effects of adolescent intermittent ethanol exposure on cortical perineuronal net and parvalbumin expression in adulthood mediate behavioral inflexibility

Effects of adolescent intermittent ethanol exposure on cortical perineuronal net and parvalbumin expression in adulthood mediate behavioral inflexibility

Background

Alcohol is commonly consumed by adolescents in a binge-like pattern, which can lead to long-lasting cognitive deficits, including reduced behavioral flexibility. We and others have determined that adolescent intermittent ethanol (AIE) exposure leads to increased number of perineuronal net (PNN) numbers in brain regions that are important for behavioral flexibility. However, whether altered neurochemistry stemming from AIE exposure plays a significant role in reduced behavioral flexibility is unknown.

Methods

We measured the number and size of parvalbumin expressing (PV+) interneurons and associated PNNs within the orbitofrontal cortex (OFC), prelimbic cortex (PrL), infralimbic cortex (IL), and anterior insular cortex (AIC) of female and male rats following AIE or control exposure and subsequent training on an attentional set-shift task (ASST). We then ran analyses to determine whether AIE-induced changes in PV and PNN measures statistically mediated the AIE-induced behavioral deficit in reversal learning.

Results

We demonstrate that AIE exposure impaired behavioral flexibility on reversal two of the ASST (i.e., recalling the initial learned associations), and led to smaller PV+ cells and increased PNN numbers in the AIC. Interestingly, PNN size and number were not altered in the PrL or IL following AIE exposure, in contrast to prior reports. Mediation analyses suggest that AIE alters behavioral flexibility, at least in part through changes in PV and PNN fluorescent measures in the AIC.

Conclusions

This study reveals a significant link between AIE exposure, neural alterations, and diminished behavioral flexibility in rats, and highlights a potential novel mechanism comprising changes in PV and PNN measures within the AIC. Future studies should explore the impact of PNN degradation within the AIC on behavioral flexibility.

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