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首页> 外文期刊>Journal of biomaterials applications >Differential stimulation of neurotrophin release by the biocompatible nano-material (carbon nanotube) in primary cultured neurons
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Differential stimulation of neurotrophin release by the biocompatible nano-material (carbon nanotube) in primary cultured neurons

机译:生物相容性纳米材料(碳纳米管)在原代培养神经元中对神经营养蛋白释放的差异刺激

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摘要

In order to develop novel, effective therapies for central nervous system regeneration, it is essential to better understand the role of neurotrophic factors and to design, accordingly, better artificial scaffolds to support both neurite outgrowth and synapse formation. Both nerve growth factor and brain-derived neurotrophic factor are major factors in neural survival, development, synaptogenesis, and synaptic connectivity of primary cultured neurons. As a prime candidate coating material for such neural cultures, carbon nanotubes offer unique structural, mechanical, and electrical properties. In this study, carbon nanotubes coated glass-coverslips were used as the matrix of a primary neural culture system used to investigate the effects of carbon nanotubes on neurite outgrowth and nerve growth factor/brain-derived neurotrophic factor release and expression. For these purposes, we performed comparative analyses of primary cultured neurons on carbon nanotubes coated, non-coated, and Matrigel-coated coverslips. The morphological findings showed definite carbon nanotubes effects on the neurite outgrowths and synaptogenic figures in both cortical and hippocampal neurons when compared with the non-coated negative control. Although the carbon nanotubes did not change neurotrophin expression levels, it stimulated brain-derived neurotrophic factor release into the media from both types of neurons. Accordingly, we suggest a different mechanism of action between carbon nanotubes and Matrigel in relation to the specific neurotrophic factors. Since carbon nanotubes supply long-term extracellular molecular cues for the survival and neurite outgrowths of cultured neurons, the results from this study will contribute to an understanding of carbon nanotubes biological effects and provide new insight into their role in the secretion of neurotrophic factors.
机译:为了开发新颖,有效的中枢神经系统再生疗法,必须更好地了解神经营养因子的作用,并据此设计更好的人工支架以支持神经突增生和突触形成。神经生长因子和脑源性神经营养因子都是原代培养神经元神经存活,发育,突触形成和突触连通性的主要因素。作为此类神经文化的主要候选涂层材料,碳纳米管具有独特的结构,机械和电性能。在这项研究中,碳纳米管涂层的玻璃盖玻片用作主要神经培养系统的基质,用于研究碳纳米管对神经突生长和神经生长因子/脑源性神经营养因子的释放和表达的影响。为此,我们对碳纳米管涂层,未涂层和基质胶涂层盖玻片上的原代培养神经元进行了比较分析。形态学结果显示,与未包被的阴性对照组相比,皮层和海马神经元中明确的碳纳米管对神经突的长出和突触形成的影响。尽管碳纳米管没有改变神经营养蛋白的表达水平,但它刺激了脑源性神经营养因子从两种类型的神经元释放到培养基中。因此,我们建议碳纳米管和基质胶之间的作用机制与特定的神经营养因子有关。由于碳纳米管为培养的神经元的存活和神经突的生长提供了长期的细胞外分子线索,因此本研究的结果将有助于对碳纳米管的生物学效应的了解,并为其在神经营养因子分泌中的作用提供新的见解。

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