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中文摘要
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描述(由申请人提供):在中枢神经系统疾病中,对压力刺激的无效反应的高潮似乎会引发神经变性。选择性神经元群在这些疾病中死亡的具体原因尚不清楚。应激刺激包括代谢活动的过度变化、兴奋性毒性、毒性损伤,或者类似于发育细胞死亡、营养支持的丧失或不足。许多这些因素已被假设有助于肌萎缩侧索硬化症(ALS)的运动神经元死亡,一种以运动神经元损伤和死亡为特征的疾病。此外,受影响组织中的神经胶质细胞对应激刺激的反应似乎也发生了改变或无效,这意味着神经胶质细胞功能的下降。在这一建议中,我们计划研究神经胶质细胞在应激后的神经保护中的作用。这种潜在的关键神经元-胶质相互作用涉及胶质细胞产生和分泌热休克蛋白(Hsps),以及神经元对这些外源蛋白的利用。
英文摘要
DESCRIPTION (provided by applicant): In diseases of the Central Nervous System, the culmination of ineffective responses to stressful stimuli appear to trigger neurodegeneration. The specific reason why selective neuronal populations die in these disorders is unknown. Stressful stimuli can include, excessive changes in metabolic activity, excitotoxicity, toxic insults, or, similar to developmental cell death, loss of or inadequate trophic support. Many of these factors have been hypothesized to contribute to motoneuron death in amyotrophic lateral sclerosis (ALS), a disease characterized by motoneuron injury and death. Furthermore, there also appears to be altered or ineffective responses to stressful stimuli by the glial cells in affected tissue, implying a decline in glial function. In this proposal, we plan to examine the role of glia in neuroprotection following stress. This potentially critical neuronal-glial interaction involves production and secretion of heat shock proteins (Hsps) by glia, and utilization of these exogenous proteins by neurons. Our preliminary data indicate that motoneurons deprived of trophic factors show no detectable change in endogenous heat shock proteins as compared to healthy spinal motoneurons. Interestingly, the addition of exogenous heat shock proteins to the culture medium is extremely effective at promoting motoneuron survival in the absence of trophic support. There are two central hypotheses of this proposal. The first is that extracellular heat shock proteins promote motoneuron survival following stressful stimuli in vivo. The second hypothesis is that glial cells secrete these proteins. The purpose of this proposal is to test this hypothesis by examining neurons and glia in culture under stress conditions, and determining the role of heat shock proteins in neuronal survival. The first Aim of this proposal will serve to first gather appropriate baseline data for Hsp expression in spinal motoneurons subjected to stressful stimuli in culture. The second Aim will address the role played by Hsps from an extracellular source in neuroprotection following stress. The third Aim will establish the connection in vitro between Hsps secreted by astrocytes and neuronal protection from stressful stimuli. Taken together, these experiments will form a strong basis both for future experiments exploring the fundamental nature of the interactions of neurons and glia, and on ways to exploit that knowledge for the treatment of neurodegenerative diseases.
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Neuroscience Training at Wake Forest
Neuroscience Training at Wake Forest
Cell Senescence and Death in Neurodegenerative Diseases
Neuroscience Training at Wake Forest
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