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HSP105 prevents depression-like behavior by increasing hippocampal brain-derived neurotrophic factor levels in mice

机译:HSP105通过增加小鼠海马脑源性神经营养因子水平来预防抑郁症样行为

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摘要

Heat shock proteins (HSPs) are stress-induced chaperones that are involved in neurological disease. Although increasingly implicated in behavioral disorders, the mechanisms of HSP action, and the relevant functional pathways, are still unclear. We examined whether oral administration of geranylgeranylacetone (GGA), a known HSP inducer, produced an antidepressant effect in a social defeat stress model of depression in mice. We also investigated the possible molecular mechanisms involved, particularly focusing on hippocampal neurogenesis and neurotrophic factor expression. In stressed mice, hippocampal HSP105 expression decreased. However, administration of GGA increased HSP105 expression and improved depression-like behavior, induced hippocampal cell proliferation, and elevated brain-derived neurotrophic factor (BDNF) levels in mouse hippocampus. Co-treatment with GGA and the BDNF receptor inhibitor K252a suppressed the antidepressant effects of GGA. HSP105 knockdown decreased BDNF mRNA levels in HT22 hippocampal cell lines and hippocampal tissue and inhibited the GGA-mediated antidepressant effect. These observations suggest that GGA administration is a therapeutic candidate for depressive diseases by increasing hippocampal BDNF levels via HSP105 expression.
机译:热休克蛋白(HSP)是与神经疾病有关的应激诱导伴侣。尽管越来越多地涉及行为障碍,但HSP作用的机制和相关的功能途径仍不清楚。我们检查了已知的HSP诱导剂Geranylgeranylacetone(GGA)的口服给药是否在小鼠抑郁的社交失败应激模型中产生了抗抑郁作用。我们还研究了可能涉及的分子机制,特别是侧重于海马神经发生和神经营养因子表达。在压力小鼠中,海马HSP105表达降低。但是,GGA的使用增加了HSP105的表达并改善了抑郁样行为,诱导了海马细胞增殖,并提高了小鼠海马中脑源性神经营养因子(BDNF)的水平。与GGA和BDNF受体抑制剂K252a共同治疗可抑制GGA的抗抑郁作用。 HSP105敲低降低了HT22海马细胞系和海马组织中BDNF mRNA的水平,并抑制了GGA介导的抗抑郁作用。这些观察结果表明,通过通过HSP105表达增加海马BDNF水平,GGA给药是治疗抑郁症的候选药物。

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