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Application of nanotubes and nanofibres in nerve repair. A review.

机译:纳米管和纳米纤维在神经修复中的应用。回顾。

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摘要

Nanoscience is the science of small particles of materials on a nanometre scale in at least one dimension. Nanomaterials can interact with tissues at the molecular level with a very high degree of functional specificity and control. A large group of nanomaterials includes nanotubes, nanofibres, liposomes, nanoparticles, polymeric micelles, nanogels and dendrimers. Such materials can be tailored to react with specific biological systems at a molecular or even supra-molecular level and respond to the cell environment while minimizing undesired side effects. Neuron injuries lead to complex cellular and molecular interactions at the lesion site in an effort to repair the damaged tissue and to regenerate the axon for reconnection with its target organ. Strategies to enhance and stimulate regeneration use various nerve conduits and synthetic guidance devices. A promising strategy for treatment of neuronal injuries is to support and promote axonal growth by means of nanotubes and nanofibres. Nanotubes can be produced from various materials, such as carbon, synthetic polymers, DNA, proteins, lipids, silicon and glass. Carbon nanotubes are not biodegradable and can be used as implants. Moreover, they serve as an extracellular scaffold to guide directed axonal growth. In the review we summarize the results of nanotube and nanofibre application in nerve repair after injury.
机译:纳米科学是至少一维的纳米级材料小颗粒的科学。纳米材料可以在分子水平上与组织相互作用,具有很高的功能特异性和控制力。大量的纳米材料包括纳米管,纳米纤维,脂质体,纳米颗粒,聚合物胶束,纳米凝胶和树枝状聚合物。可以对此类材料进行定制,使其在分子或什至超分子水平上与特定的生物系统发生反应,并对细胞环境做出反应,同时将不良副作用降至最低。神经元损伤导致病变部位复杂的细胞和分子相互作用,以修复受损的组织并再生轴突以与其靶器官重新连接。使用各种神经导管和合成引导装置来增强和刺激再生的策略。一种治疗神经元损伤的有前途的策略是通过纳米管和纳米纤维来支持和促进轴突生长。纳米管可以由多种材料制成,例如碳,合成聚合物,DNA,蛋白质,脂质,硅和玻璃。碳纳米管不可生物降解,可以用作植入物。而且,它们用作指导定向轴突生长的细胞外支架。在综述中,我们总结了纳米管和纳米纤维在损伤后神经修复中的应用结果。

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