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中文摘要
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应激相关焦虑症发生的细胞和分子机制在很大程度上仍不清楚。暴露在心理应激中会导致焦虑症的发展,包括创伤后应激障碍(PTSD)。研究这些疾病的发病机制的一种方法是在动物模型中检查大脑如何控制和应对压力。研究表明,应激反应对动物的短期生存至关重要,但如果不加以控制,它们可能会变得有害,导致适应不良的应对机制,并改变大脑的生理、化学和解剖结构。 这些研究旨在更好地了解p75神经营养素受体(P75NTR)和长期抑郁(LTD)在调节焦虑和应激反应中的作用,LTD是突触可塑性的一种形式。这些研究集中在1)p75NTR缺失在海马生理学中的生理效应及其与胆碱能信号的关系,以及2)这些过程的中断如何影响焦虑样行为的发展和对急性应激的反应。 在成人脑中,p75NTR主要在基底前脑胆碱能神经元表达,这些神经元是胆碱能神经支配海马区的主要来源。暴露在急性心理压力下,成年海马体中一种称为长期抑郁(LTD)的突触可塑性得以实现。海马区LTD的生物学功能,特别是在成人中的生物学功能仍然不清楚。最近的研究结果表明,LTD可能通过确保对环境变化的适应性反应来调节行为灵活性。我们发现,缺乏p75NTR的转基因小鼠不会表现出应激诱导的长期抑郁。我们还发现,p75NTR缺失的小鼠表现出更高水平的焦虑样行为。用毒扁豆碱拮抗剂东莨菪碱抑制胆碱能传递也阻断了海马区应激激活的LTD,导致焦虑样行为增加。我们通过直接使用特定的多肽抑制剂阻断LTD并检查焦虑样行为,证实了这些行为效应与应激使LTD的缺陷有关。正如预期的那样,多肽抑制剂的使用减少了应激诱导的LTD,并加剧了焦虑样行为。 我们的研究为进一步探索压力使能的LTD如何调节情绪以应对急性压力提供了良好的基础。
英文摘要
The cellular and molecular mechanisms underlying development of stress-related anxiety disorders remain largely unknown. Exposure to psychogenic stress contributes to the development of anxiety disorders, including post-traumatic stress disorder (PTSD). One approach to studying the pathogenesis of these disorders is to examine how the brain controls and responds to stress in animal models. Studies show that stress responses are critical for the animal's short-term survival, but they can become harmful if uncontrolled, leading to maladaptive coping mechanisms and altered brain physiology, chemistry, and anatomy. These studies were designed to better understand the roles of the p75 neurotrophin receptor (p75NTR) and long-term depression (LTD), a form of synaptic plasticity, in mediating development of anxiety and the stress response. These studies focused on 1) the physiological effects of loss of p75NTR in hippocampal physiology and the relationship to cholinergic signaling and 2) how disruption of these processes affects development of anxiety-like behavior and the response to acute stress. In the adult brain, p75NTR is primarily expressed in basal forebrain cholinergic neurons, which are the major source of cholinergic innervation to the hippocampus. Exposure to acute psychological stress enables a form of synaptic plasticity called long-term depression (LTD) in the adult hippocampus. The biological functions of hippocampal LTD, especially in the adult, remain obscure. Recent findings have suggested that LTD may mediate behavioral flexibility by ensuring adaptive responses to environmental changes. We found that transgenic mice lacking the p75NTR do not exhibit stress-induced long-term depression. We also found that the p75NTR-null mice show increased levels of anxiety-like behavior. Inhibiting cholinergic transmission with the muscarinic antagonist scopolamine also blocked stress-enabled LTD in the hippocampus, leading to increased anxiety-like behavior. We confirmed that these behavioral effects were related to a deficiency in stress-enabled LTD by blocking LTD directly using a specific peptide inhibitor and examining anxiety-like behavior. As expected, administration of the peptide inhibitor reduced stress-induced LTD and exacerbated anxiety-like behavior. Our studies provide an excellent foundation for further exploration of how stress-enabled LTD regulates mood in response to acute stress.
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DOI: 10.1523/jneurosci.2707-11.2011
发表时间: 2011-08-17
期刊: The Journal of neuroscience : the official journal of the Society for Neuroscience
影响因子: --
作者: [Lu Y, Ji Y, Ganesan S, Schloesser R, Martinowich K, Sun M, Mei F, Chao MV, Lu B]
通讯作者: Lu B
Studies Of Central Nervous System Functional Anatomy
AMPA receptor trafficking in the pathophysiology and treatment of mood disorders
AMPA receptor trafficking in the pathophysiology and treatment of mood disorders
Glucocorticoid Receptors (GR) in Mitochondria: The Role in Chronic Stress
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