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Preparation and Maintenance of Dorsal Root Ganglia Neurons in Compartmented Cultures

机译:隔室培养中背根神经节神经元的制备和维持

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摘要

Neurons extend axonal processes that are far removed from the cell body to innervate target tissues, where target-derived growth factors are required for neuronal survival and function. Neurotrophins are specifically required to maintain the survival and differentiation of innervating sensory neurons but the question of how these target-derived neurotrophins communicate to the cell body of innervating neurons has been an area of active research for over 30 years. The most commonly accepted model of how neurotrophin signals reach the cell body proposes that signaling endosomes carry this signal retrogradely along the axon. In order to study retrograde transport, a culture system was originally devised by Robert Campenot, in which cell bodies are isolated from their axons. The technique of preparing these compartmented chambers for culturing sensory neurons recapitulates the selective stimulation of neuron terminals that occurs in vivo following release of target-derived neurotrophins. Retrograde signaling events that require long-range microtubule dependent retrograde transport have important implications for the treatment of neurodegenerative disorders.
机译:神经元扩展了远离细胞体的轴突过程,从而支配了靶组织,在靶组织中,靶标生长因子是神经元生存和功能所必需的。特定需要神经营养蛋白来维持神经支配的感觉神经元的存活和分化,但是这些靶标神经营养蛋白如何与神经支配的神经元细胞体通讯的问题已成为30多年来积极研究的领域。神经营养蛋白信号如何到达细胞体的最普遍接受的模型提出,信号传递内体沿着轴突逆行携带该信号。为了研究逆行运输,Robert Campenot最初设计了一种培养系统,该系统将从细胞轴突中分离出细胞体。准备这些用于培养感觉神经元的隔室的技术概括了在释放靶标衍生的神经营养蛋白后体内发生的神经元末端的选择性刺激。需要远距离微管依赖性逆行转运的逆行信号事件对神经退行性疾病的治疗具有重要意义。

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