CNS Development & Alcohol: Microglia-Neuron Interactions
CNS Development & Alcohol: Microglia-Neuron Interactions
批准号:
6822759
负责人:
Cynthia J. Kane
金额:
$28.24万
依托单位国家:
美国
项目类别:
财政年份:
2004
资助国家:
美国
项目状态:
已结题
起止时间:
2004-07-01 至 2009-06-30
关键词:
中文摘要
描述(由申请人提供):胎儿酒精综合征和相关疾病是智力迟钝的主要已知原因。了解产前酒精暴露的神经病理学是至关重要的。由于对酒精破坏神经元发育的了解有限,缺乏预防胎儿酒精相关脑损伤的方法。为了解决这一知识空白,我们正在研究神经元-胶质细胞相互作用在发育过程中酒精介导的神经毒性中的作用。小胶质细胞是唯一重要的,因为它们提供神经元保护,或与病理激活,介导神经元死亡。使用小脑颗粒细胞和小胶质细胞的共培养,我们发现小胶质细胞有效地保护神经元免受酒精毒性。我们使用体内新生大鼠模型的研究表明,单次酒精剂量在发育中的小脑中产生近40%的小胶质细胞损失,并且存活的细胞似乎被病理激活。在培养中的研究表明,酒精诱导的小胶质细胞损失是通过细胞凋亡发生的。因此,小胶质细胞群体的酒精消耗可能会破坏发育中大脑中小胶质细胞衍生的神经保护作用。有趣的是,我们的研究还揭示了酒精降低了PPARy蛋白的水平,并且进一步地,PPARy的药理学活化可以降低小胶质细胞和神经元中的酒精细胞毒性。
为了进一步研究这些发现,我们建议调查的总体假设,即酒精破坏小胶质细胞-神经元的相互作用,包括诱导小胶质细胞凋亡,小胶质细胞活化,抑制小胶质细胞源性神经保护。将使用补充的体内和体外模型来检验这一假设。这项建议的具体目标是:1.确定酒精诱导的小脑发育中的小胶质细胞损失是否通过凋亡发生。2.确定酒精是否诱导存活的小胶质细胞群体的激活。3.确定酒精对发育中的小胶质细胞的有害影响是否会破坏神经元和小胶质细胞之间的相互作用。4.确定酒精诱导的小脑神经元和小胶质细胞损失是否涉及抑制PPARgamma信号传导,以及是否可以通过PPARgamma激活来预防。本研究的结果将有助于更好地了解酒精干扰与小胶质细胞和神经元之间的关系。这些知识的应用可能为干预产前酒精暴露引起的神经病理学提供新的治疗策略。
英文摘要
DESCRIPTION (provided by applicant): Fetal alcohol syndrome and related disorders are the leading known cause of mental retardation. Understanding the neuropathology of prenatal alcohol exposure is critical. Methods for preventing alcohol associated brain damage in the fetus are lacking due to limited understanding of alcohol disruption of neuronal development. To address this gap in knowledge, we are investigating the role of neuronal-glial interactions in alcohol-mediated neurotoxicity during development. Microglia are uniquely important because they provide neuronal protection or, with pathologic activation, mediate neuronal death. Using co-cultures of cerebellar granule cells and microglia, we have found that microglia effectively protect neurons against alcohol toxicity. Our studies using an in vivo neonatal rat model reveal that a single alcohol dose produces almost 40% microglial loss in the developing cerebellum, and the surviving cells appear to be pathologically activated. Studies in culture suggest that alcohol-induced microglial loss is occurring by apoptosis. Thus, alcohol depletion of the microglial population may disrupt microglial-derived neuroprotection in the developing brain. Interestingly, our studies also reveal that alcohol reduces levels of the PPARgamma protein and, further, pharmacologic activation of PPARy can reduce alcohol cytotoxicity in microglia and neurons.
To further these findings, we propose to investigate the overall hypothesis that alcohol disruption of microglial-neuronal interactions includes induction of microglial apoptosis, microglial activation, and suppression of microglial-derived neuroprotection. Complementary in vivo and in vitro models will be used to test this hypothesis. The specific aims of this proposal are to: 1. Determine whether alcohol-induced microglial cell loss in the developing cerebellum occurs by apoptosis. 2. Determine whether alcohol induces activation of the surviving microglial population. 3. Establish whether the deleterious effects of alcohol on developing microglia disrupt interactions between neurons and microglia. 4. Establish whether alcohol induced loss of neurons and microglia in the cerebellum involves suppression of PPARgamma, signaling and can be prevented by PPARgamma activation. Results of this study will provide better understanding of alcohol interference with the relationship between microglia and neurons. Application of this knowledge may provide new therapeutic strategies for intervention in the neuropathology caused by prenatal alcohol exposure.
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Alcohol Pathogenesis in CNS Microglial Cells
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依托单位:
BRAIN DEVELOPMENT & ETHANOL: MICROGLIAL PATHOGENESIS
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BRAIN DEVELOPMENT & ETHANOL: MICROGLIAL PATHOGENESIS
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财政年份:1998
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INTEGRATION OF GLIAL AND NEURONAL MECHANISMS IN CELL CULTURE
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ROLE OF TGF-B IN CONTROL OF GROWTH AND DIFFERENTIATION
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财政年份:--
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负责人:Cynthia J. Kane
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依托单位:--
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