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Effects of short-term exposure to lithium on antiapoptotic Bcl-xL protein expression in cortex and hippocampus of rats after acute stress

机译:短期暴露在急性胁迫后大鼠皮层和海马抗凋亡Bcl-XL蛋白表达的影响

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Abstract The antiapoptotic protein Bcl-xL is involved in development of neurobiological resilience to stress; hence, the possibility of use of psychotropic drugs to increase its expression in brain in response to stress is of considerable interest. Lithium is a neurotropic drug widely used in psychiatry. In work, we studied effects of lithium administration (for 2 or 7 days) on the expression of Bcl-xL mRNA and protein in the hippocampi and cortices of rats subjected to stress that induced depression-like behavior in the animals. In contrast to the brain-derived neurotrophic factor (BDNF), whose expression decreased in the hippocampus in response to acute stress, stress increased the level of Bcl-xL mRNA in the hippocampus, but decreased it in the frontal cortex. Treatment of stressed animals with lithium for 2 or 7 days increased Bcl-xL protein levels 1.5-fold in the hippocampus, but it decreased them in the cortex. Therefore, Bcl-xL expression in the brain can be modulated by both stress and psychotropic drugs, and the effects of these factors are brain region-specific: both stress exposure and lithium administration activated Bcl-xL expression in the hippocampus and suppressed it in the frontal cortex. The activation of Bcl-xL expression in the hippocampus by lithium, demonstrated for the first time in this study, suggests an important role of this protein in the therapeutic effects of lithium in the treatment of stress-induced psychoemotional disorders.
机译:<标题>抽象 ara>抗透蛋白bcl-xl参与神经生物学弹性的强调;因此,使用精神药物的可能性在响应压力响应脑中增加其在大脑中的表达具有相当大的兴趣。锂是一种广泛应用于精神病学的神经腐蚀药物。在工作中,我们研究了锂施用(2或7天)的作用对Hippocampi的Bcl-XL mRNA和蛋白质的表达,并将大鼠的大鼠进行胁迫,该大鼠诱导动物中的抑郁样行为。与脑衍生的神经营养因子(BDNF)相反,其表达在海马中响应于急性胁迫而降低,胁迫增加了海马中Bcl-XL mRNA的水平,但在额叶中将其降低。用锂处理2或7天的应激动物增加了海马的Bcl-XL蛋白水平1.5倍,但它在皮质中降低了它们。因此,大脑中的BCL-XL表达可以通过应激和精神药物调节,并且这些因素的效果是特异性的:压力暴露和锂施用在海马中的活化Bcl-X1表达并抑制在其中正面皮质。锂激活海马中的Bcl-XL表达,这是本研究的第一次证明了该蛋白质在锂治疗应激诱导的心理间隙治疗中的重要作用。

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