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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >GLUCOCORTICOID REGULATION OF BRAIN-DERIVED NEUROTROPHIC FACTOR: RELEVANCE TO HIPPOCAMPAL STRUCTURAL AND FUNCTIONAL PLASTICITY
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GLUCOCORTICOID REGULATION OF BRAIN-DERIVED NEUROTROPHIC FACTOR: RELEVANCE TO HIPPOCAMPAL STRUCTURAL AND FUNCTIONAL PLASTICITY

机译:糖皮质激素对脑源性神经营养因子的调节:与海马结构和功能可塑性的关系

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Glucocorticoids serve as key stress response hormones that facilitate stress coping. However, sustained glucocorticoid exposure is associated with adverse consequences on the brain, in particular within the hippocampus. Chronic glucocorticoid exposure evokes neuronal cell damage and dendritic atrophy, reduces hippocampal neurogen-esis and impairs synaptic plasticity. Glucocorticoids also alter expression and signaling of the neurotrophin, brain-derived neurotrophic factor (BDNF). Since BDNF is known to promote neuroplasticity, enhance cell survival, increase hippocampal neurogenesis and cellular excitability, it has been hypothesized that specific adverse effects of glucocorticoids may be mediated by attenuating BDNF expression and signaling. The purpose of this review is to summarize the current state of literature examining the influence of glucocorticoids on BDNF, and to address whether specific effects of glucocorticoids arise through perturbation of BDNF signaling. We integrate evidence of glucocorticoid regulation of BDNF at multiple levels, spanning from the well-documented glucocorticoid-induced changes in BDNF mRNA to studies examining alterations in BDNF receptor-mediated signaling. Further, we delineate potential lines of future investigation to address hitherto unexplored aspects of the influence of glucocorticoids on BDNF. Finally, we discuss the current understanding of the contribution of BDNF to the modulation of structural and functional plasticity by glucocorticoids, in particular in the context of the hippocampus. Understanding the mechanistic crosstalk between glucocorticoids and BDNF holds promise for the identification of potential therapeutic targets for disorders associated with the dysfunction of stress hormone pathways.
机译:糖皮质激素是促进压力应对的关键应激反应激素。然而,持续的糖皮质激素暴露与对大脑,特别是在海马体内的不良后果有关。慢性糖皮质激素的暴露引起神经元细胞损伤和树突萎缩,减少海马神经元形成并损害突触可塑性。糖皮质激素还改变神经营养蛋白,脑源性神经营养因子(BDNF)的表达和信号传导。由于已知BDNF可以促进神经可塑性,提高细胞存活率,增加海马神经发生和细胞兴奋性,因此已经假设糖皮质激素的特定不良反应可以通过减弱BDNF的表达和信号传导来介导。这篇综述的目的是总结研究糖皮质激素对BDNF的影响的文献的现状,并探讨糖皮质激素的特定作用是否通过BDNF信号的扰动而产生。我们整合了对糖皮质激素调节BDNF的多个水平的证据,从有据可查的糖皮质激素诱导的BDNF mRNA变化到研究检查BDNF受体介导的信号传导变化的研究。此外,我们勾画了未来研究的潜在方向,以解决糖皮质激素对BDNF的影响的迄今尚未探索的方面。最后,我们讨论了目前对BDNF对糖皮质激素调节结构和功能可塑性的贡献的理解,特别是在海马体中。了解糖皮质激素和BDNF之间的机制性串扰,有望为与应激激素途径功能障碍有关的疾病的潜在治疗靶标的鉴定。

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