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首页> 外文期刊>Journal of Materials Science >Implantable microdevice for peripheral nerve regeneration: Materials and fabrications
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Implantable microdevice for peripheral nerve regeneration: Materials and fabrications

机译:用于周围神经再生的可植入微型设备:材料和制造

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Rapid innovations in tissue engineering have increased the likelihood that fabricated microdevices for neuro-regeneration can finally be applied to humans. The advent of microdevices has created strong interest in many fields, including diagnostics, drug/gene delivery, and tissue engineering. The integration of microfluidics and tissue engineering is believed to hold promise in applications for neuro-regeneration. Early clinical results suggest that the fabrication of microdevices with appropriate properties indeed yields multi-functional applications with enhanced efficacy and less adverse effects. A prerequisite for advancing this area of research is the development of apt devices for nerve restoration, which can provide molecular, electrical, and micro-environmental cues for efficient neuronal cell regeneration. Based on the increasing clinical application of fabrication methods and continued efforts to advance this technology, it is likely that microdevice fabrication will become an effective method for achieving the above-mentioned criteria. Therefore, the aim of this review is to provide basic information on the fabrication of microdevices by focusing exclusively on several kinds of biomaterials, such as biocompatible, biodegradable, nonconducting, conducing, elastomeric and thermoplastic materials with natural, synthetic polymers, inorganic biomaterials, and physiochemical parameter for neuro-regeneration. We also discuss distinctive nerve growth factors and neural cell types within the context of developing micro-based neuro-degenerative applications. The information provided in this review is important with regards to the safe and widespread use of microdevice fabrication, particularly in the neuro-regenerative field.
机译:组织工程学的快速创新增加了制造出来的用于神经再生的微型设备最终可以应用于人类的可能性。微型设备的出现引起了许多领域的强烈兴趣,包括诊断,药物/基因传递和组织工程。据信,微流体学与组织工程学的集成在神经再生应用中具有广阔的前景。早期的临床结果表明,具有适当性能的微型设备的制造确实可以产生具有增强功效和较少副作用的多功能应用。推进这一研究领域的前提条件是开发用于神经修复的apt装置,该装置可以提供分子,电和微环境线索,以实现有效的神经元细胞再生。基于制造方法在临床上的日益增长的应用以及不断推进该技术的努力,微器件制造可能会成为实现上述标准的有效方法。因此,本综述的目的是通过专注于几种生物材料,例如具有天然,合成聚合物的生物相容性,生物可降解性,非导电性,导电性,弹性体和热塑性材料,无机生物材料以及各种生物材料,来提供有关微器件制造的基本信息。神经再生的理化参数。我们还将在开发基于微神经退行性神经的应用的背景下讨论独特的神经生长因子和神经细胞类型。这篇综述中提供的信息对于安全且广泛地使用微型设备制造(尤其是在神经再生领域)非常重要。

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