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Investigation of central nervous system neurons under mechanical strain: An in vitro traumatic brain injury model

机译:机械应变下中枢神经系统神经元的研究:体外颅脑损伤模型。

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Effects of mechanical loading on development of central nervous system (CNS) cells and neurite extension have been recognized recently. Effects of loading are very complicated, since until a threshold, tension plays a positive role while after the threshold value, it is degenerative. The situation gets more complicated since CNS is made up of several different cell types that respond to various loads differently. There are some mechanical trauma models in the literature, but they usually employ hard and two dimensional culture substrates, which fail to mimic the natural niche of the cells. The aim of this work is to create an experimental model that can mimic the physiological habitat and normal loading conditions, and investigate the responses of CNS cells in response to different mechanical stimuli and strains, and therefore evaluate the effects of mechanical stress on cell development, neurite extension and degeneration, in order to be used in therapeutic investigations for neurodegenerative diseases. Electrospun poly-caprolactone (PCL) scaffolds were used as tissue engineering scaffolds, and B35 central nervous system neuron cell line was employed. Effects of mechanical strain on cell morphology, neurite extension and cytoskeleton, and after the threshold value, on apoptosis have been examined in morphological and molecular level.
机译:最近已经认识到机械负荷对中枢神经系统(CNS)细胞发育和神经突延伸的影响。加载的影响非常复杂,因为直到达到阈值,张力才起正作用,而在阈值之后,它是退化性的。由于CNS由几种不同的小区类型组成,这些小区类型对各种负载做出不同的响应,因此情况变得更加复杂。文献中有一些机械创伤模型,但是它们通常采用坚硬的二维培养基质,无法模拟细胞的自然生态位。这项工作的目的是创建一个可以模拟生理生境和正常负荷条件的实验模型,并研究中枢神经系统细胞对不同机械刺激和应变的响应,从而评估机械应力对细胞发育的影响,神经突延伸和变性,以用于神经退行性疾病的治疗研究。将电纺聚己内酯(PCL)支架用作组织工程支架,并使用B35中枢神经系统神经元细胞系。机械应变对细胞形态,神经突延伸和细胞骨架以及阈值后对细胞凋亡的影响在形态和分子水平上进行了研究。

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