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中文摘要
翻译
描述(由申请人提供):成人神经可塑性的机制尚不清楚。雌激素已经成为一种潜在的候选者,可以调节大脑在一生中学习和编码新记忆的能力。雌激素已被证明在雌性和雄性大鼠的海马区以及非人类灵长类动物的海马区都能诱导棘突发生和突触增强。此外,雌激素还与多种神经可塑性改变的疾病有关,如阿尔茨海默病、帕金森氏病、抑郁症和精神分裂症。虽然雌激素诱导的脊柱形成已经研究了几十年,但还没有对新出现的脊柱进行实时成像和表征。在这里,我建议使用双光子成像和电生理记录相结合的方法,在成年大鼠的急性海马片上检测这些新的脊椎的功能特性。我的主要假设是,雌激素在成年的海马体中诱导出更“年轻”的形态和电生理特征,具有高度可塑性的新棘突和更多的沉默突触;然而,这些变化是允许的,因为如果没有像LTP诱导这样的“稳定”刺激,新的棘突和突触就会消失。这些实验对于研究雌激素在成年中枢神经系统中的作用具有重要意义。 以及一般成人的旋转和突触发生的功能。与公共健康相关:大脑学习和形成新记忆的能力在许多疾病中受到损害,如阿尔茨海默氏症、帕金森氏病、抑郁症和精神分裂症。雌激素已经被证明可以增加突触的数量,突触是脑细胞之间的交流场所。因此,更好地了解雌激素的作用机制具有巨大的潜力 临床应用。
英文摘要
DESCRIPTION (provided by applicant): The mechanisms underlying adult neural plasticity are poorly understood. Estrogen has emerged as a potential candidate to mediate the brain's ability to learn and encode new memories throughout life. Estrogen has been shown to induce spinogenesis and synaptic potentiation in the hippocampus of both female and male rat, and in non-human primates. In addition, estrogen has been implicated in a wide variety of disorders in which neural plasticity is altered, such as Alzheimer's Disease, Parkinson's Disease, depression, and schizophrenia. Although estrogen-induced spinogenesis has been studied for decades, live imaging and characterization of the newly emerged spines has not yet been performed. Here, I propose to use a combination of two-photon imaging and electrophysiological recording in acute hippocampal slices of adult rat to examine the functional properties of these new spines. My main hypothesis is that estrogen induces more "youthful" morphological and electrophysiological profiles in the adult hippocampus, with highly plastic new spines and an increase in silent synapses; however, these changes are permissive in that in the absence of "stabilizing" stimulus such as induction of LTP, the new spines and synapses disappear. The proposed experiments will be important for both investigations of estrogen's functions in the adult CNS as well as the functions of spino- and synaptogenesis in the adult in general. PUBLIC HEALTH RELEVANCE: The brain's ability to learn and form new memories is impaired in many disorders, such as Alzheimer's Disease, Parkinson's Disease, depression, and schizophrenia. Estrogen has been shown to increase the number of synapses, the sites of communications between brain cells. Thus, a better understanding of the mechanisms of estrogen's actions holds great potential for far-reaching clinical applications.
期刊论文(4)
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DOI: 10.1523/jneurosci.4763-10.2011
发表时间: 2011-01-05
期刊: The Journal of neuroscience : the official journal of the Society for Neuroscience
影响因子: --
作者: [Christoffel DJ, Golden SA, Dumitriu D, Robison AJ, Janssen WG, Ahn HF, Krishnan V, Reyes CM, Han MH, Ables JL, Eisch AJ, Dietz DM, Ferguson D, Neve RL, Greengard P, Kim Y, Morrison JH, Russo SJ]
通讯作者: Russo SJ
Right Brain: past medical story.
右脑:过去的医学故事。
DOI: 10.1212/wnl.0b013e31826aad4b
发表时间: 2012
期刊: Neurology
影响因子: 9.9
作者: [Dumitriu,Dani]
通讯作者: Dumitriu,Dani
Structural and Social Determinants of Maternal Mental Health, Morbidity, and Inequities in COMBO
COVID-19 Mother Baby Outcomes (COMBO): brain-behavior functioning
COVID-19 Mother Baby Outcomes (COMBO): brain-behavior functioning
Live-imaging and characterization of estrogen-induced dendritic spines
海外基金