首页> 外文期刊>Behavioural Brain Research: An International Journal >Restraint stress exacerbates cell degeneration induced by acute binge ethanol in the adolescent, but not in the adult or middle-aged, brain
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Restraint stress exacerbates cell degeneration induced by acute binge ethanol in the adolescent, but not in the adult or middle-aged, brain

机译:约束应激加剧了青少年急性泪液乙醇诱导的细胞变性,但不在成人或中年脑中

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Restraint stress (RS) induces neurotoxicity in the hippocampus, yet most of the studies have employed protracted RS (i.e., approximate to 21 days). Binge ethanol can induce brain toxicity, an effect affected by age. It could be postulated that RS may facilitate ethanol-induced neurotoxicity, perhaps to a greater extent in adolescent vs. older subjects. We analyzed whether adolescent, adult or middle-aged male rats exposed to five episodes of RS followed, 72h later, by binge ethanol (i.e., two administrations of 2.5 g/kg ethanol) exhibited hippocampal neurotoxicity. Adolescents, but not adult or middle-aged rats, exhibited sensitivity to the neurotoxic effects of ethanol at dorsal CA2, ventral CA3 and ventral DG, and a neurotoxic effect of stress at dorsal CA1. Moreover, the combination of ethanol and stress exerted a synergistic effect upon cell degeneration at ventral CA1 and CA2, which was restricted to adolescents. Ethanol also increased cell degeneration, irrespective of age or stress, in dorsal CA3 and in dorsal DG; and ethanol and stress had, across all ages, a synergistic effect upon cell degeneration at the dorsal CA1. The greater neurotoxic response of adolescents to ethanol, stress, or ethanol + stress can put them at risk for the development of alcohol problems.
机译:抑制应激(RS)在海马中诱导神经毒性,但大多数研究都采用了持久的Rs(即,近21天)。泪乙醇可以诱导脑毒性,其效果受年龄影响。可以假设RS可以促进乙醇诱导的神经毒性,也许在青少年与老科对象中的程度更大。我们分析了暴露于5次RS的五发发作的青少年,成人或中年雄性大鼠,72h以后,通过泪乙醇(即,两个施用2.5g / kg乙醇)表现出海马神经毒性。青少年但不是成人或中年大鼠,表现出对乙醇在背侧Ca2,腹侧Ca3和腹侧Dg的神经毒性作用的敏感性,以及背部Ca1处的应力的神经毒性作用。此外,乙醇和胁迫的组合对腹侧Ca1和Ca 2的细胞变性产生了协同作用,其仅限于青少年。乙醇还增加了细胞变性,无论年龄还是应激,在背侧Ca3和背侧dg中的胁迫都是增加的;乙醇和胁迫在所有年龄段中,对背部Ca1的细胞变性的协同作用。青少年对乙醇,胁迫或乙醇+应力的较大神经毒性反应可以使它们面临酗酒的发展的风险。

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