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青春期和成年期大鼠与急性乙醇和条件性味觉厌恶相关的 fos 激活模式。

Fos activation patterns related to acute ethanol and conditioned taste aversion in adolescent and adult rats.

机构信息

Binghamton University, Binghamton, NY, 13902, United States.

Binghamton University, Binghamton, NY, 13902, United States.

出版信息

Alcohol. 2019 Aug;78:57-68. doi: 10.1016/j.alcohol.2019.02.004. Epub 2019 Feb 22.

Abstract

Studies in rats have revealed marked age differences in sensitivity to the aversive properties of ethanol, with a developmental insensitivity to ethanol aversion that is most pronounced during pre- and early adolescence, declining thereafter to reach the enhanced aversive sensitivity of adults. The adolescent brain undergoes significant transitions throughout adolescence, including in regions linked with drug reward and aversion; however, it is unknown how ontogenetic changes within this reward/aversion circuitry contribute to developmental differences in aversive sensitivity. The current study examined early adolescent (postnatal day [P]28-30) and adult (P72-74) Sprague-Dawley male rats for conditioned taste aversion (CTA) after doses of 0, 1.0, or 2.5 g/kg ethanol, and patterns of neuronal activation in response to ethanol using Fos-like immunohistochemistry (Fos+) to uncover regions where age differences in activation are associated with ethanol aversion. An adolescent-specific ethanol-induced increase in Fos+ staining was seen within the nucleus accumbens shell and core. An age difference was also noted within the Edinger-Westphal nucleus (EW) following administration of the lower dose of ethanol, with 1 g/kg ethanol producing CTA in adults but not in adolescents and inducing a greater EW Fos response in adults than adolescents. Regression analysis revealed that greater numbers of Fos+ neurons within the EW and insula (Ins) were related to lower consumption of the conditioned stimulus (CS) on test day (reflecting greater CTA). Some regionally specific age differences in Fos+ were noted under baseline conditions, with adolescents displaying fewer Fos+ neurons than adults within the prelimbic (PrL) cortex, but more than adults in the bed nucleus of the stria terminalis (BNST). In the BNST (but not PrL), ethanol-induced increases in Fos-immunoreactivity (IR) were evident at both ages. Increased ethanol-induced activity within critical appetitive brain regions (NAc core and shell) supports a role for greater reward-related activation during adolescence, possibly along with attenuated responsiveness to ethanol in EW and Ins in the age-typical resistance of adolescents to the aversive properties of ethanol.

摘要

在大鼠中的研究表明,对乙醇的厌恶属性的敏感性存在明显的年龄差异,在青春期前和早期青春期时,对乙醇厌恶的发育性不敏感最为明显,此后下降到达到成年人增强的厌恶敏感性。青春期大脑在整个青春期经历着重大转变,包括与药物奖赏和厌恶相关的区域;然而,尚不清楚该奖赏/厌恶回路内的个体发育变化如何导致厌恶敏感性的发育差异。本研究检查了早期青春期(出生后第 28-30 天)和成年期(第 72-74 天)Sprague-Dawley 雄性大鼠在 0、1.0 或 2.5 g/kg 乙醇剂量后的条件味觉厌恶(CTA),并使用 Fos 样免疫组织化学(Fos+)检查对乙醇的神经元激活模式,以揭示与乙醇厌恶相关的激活年龄差异的区域。在伏隔核壳和核内观察到青春期特异性的乙醇诱导的 Fos+染色增加。在给予较低剂量的乙醇后,在 Edinger-Westphal 核(EW)中也观察到年龄差异,1 g/kg 乙醇在成年人中产生 CTA,但在青少年中没有,并且在成年人中比青少年引起更大的 EW Fos 反应。回归分析表明,EW 和脑岛(Ins)内的 Fos+神经元数量越多,条件刺激(CS)的消耗量就越低(反映了更大的 CTA)。在基础条件下观察到一些区域特异性的年龄差异,青少年的扣带回皮层内的 Fos+神经元比成年人少,但比成年人在终纹床核(BNST)内多。在 BNST(但不在 PrL)中,在两个年龄都可以观察到乙醇诱导的 Fos-免疫反应性(IR)增加。在关键的食欲脑区(NAc 壳和核)中,乙醇诱导的活性增加支持了青春期内更大的奖赏相关激活作用,可能与 EW 和 Ins 中对乙醇的反应性减弱有关,这是青少年对乙醇的厌恶特性的典型抵抗力的一部分。

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