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Cellular and molecular responses of cultured neurons to stressful stimuli

机译:培养的神经元对应激刺激的细胞和分子反应

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Synaptic function is critical for the brain to process experiences dictated by the environment requiring change over the lifetime of the organism. Experience-driven adaptation requires that receptors, signal transduction pathways, transcription and translational mechanisms within neurons respond rapidly over its lifetime. Adaptive responses communicated through the rapid firing of neurons are dependent upon the integrity and function of synapses. These rapid responses via adaptation underlie the organism's ability to perceive, learn, remember, calculate and plan. Glutamate, the endogenous neurotransmitter required for physiological excitation in the brain, is critically involved in neuronal adaptive responses and in the pathophysiology of neurodegenerative disorders. Using neuronal experimental systems, we will discuss how compounds with low dose effects mediated via glutamate receptors can result either in a neuroprotective or neurotoxic response. Because the brain has evolved to respond rapidly to environmental cues, exposure of neurons to stressful stimuli can result in a pivotal response toward either synaptic adaptation or dysfunction and neuronal cell death. Understanding how neurons adapt to stressful stimuli will provide important clues toward the development of strategies to protect the brain against neurodegeneration.
机译:突触功能对于大脑处理在生物体的整个生命周期中需要变化的环境所决定的体验至关重要。经验驱动的适应需要神经元内的受体,信号转导途径,转录和翻译机制在其一生中快速响应。通过神经元快速放电传达的适应性反应取决于突触的完整性和功能。通过适应的这些快速反应是有机体感知,学习,记忆,计算和计划的能力的基础。谷氨酸是大脑中生理刺激所需的内源性神经递质,它与神经元适应性反应以及神经退行性疾病的病理生理密切相关。使用神经元实验系统,我们将讨论通过谷氨酸受体介导的低剂量效应的化合物如何导致神经保护或神经毒性反应。由于大脑已经进化为对环境提示做出快速反应,因此神经元受到压力刺激会导致对突触适应或功能障碍和神经元细胞死亡的关键反应。了解神经元如何适应压力刺激将为开发保护大脑免受神经变性的策略提供重要线索。

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