Institute of Tissue Regeneration and Engineering, Dankook University, Cheonan 330-714, Republic of Korea.
Nanoscale. 2013 Jan 21;5(2):487-97. doi: 10.1039/c2nr31581e. Epub 2012 Dec 10.
Carbon nanotubes (CNTs) have become an intriguing and promising biomaterial platform for the regeneration and functional recovery of damaged nerve tissues. The unique electrical, structural and mechanical properties, diversity of available surface chemistry and cell-penetrating ability of CNTs have made them useful implantable matrices or carriers for the delivery of therapeutic molecules. Although there are still challenges being faced in the clinical applications of CNTs mainly due to their toxicity, many studies to overcome this issue have been published. Modification of CNTs with chemical groups to ensure their dissolution in aqueous media is one possible solution. Functionalization of CNTs with biologically relevant and effective molecules (biofunctionalization) is also a promising strategy to provide better biocompatibility and selectivity for neural regeneration. Here, we review recent advances in the use of CNTs to promote neural regeneration.
碳纳米管(CNTs)已成为一种备受关注且极有前途的生物材料平台,可用于受损神经组织的再生和功能恢复。CNTs 独特的电学、结构和力学特性、丰富的表面化学特性和细胞穿透能力,使其成为治疗分子传递的有用植入基质或载体。尽管 CNT 在临床应用中仍面临挑战,主要是由于其毒性,但已经发表了许多旨在克服这一问题的研究。用化学基团对 CNT 进行修饰以确保其在水介质中的溶解是一种可能的解决方案。用具有生物相关性和有效性的分子对 CNT 进行功能化(生物功能化)也是一种很有前途的策略,可以为神经再生提供更好的生物相容性和选择性。在这里,我们综述了 CNT 促进神经再生的最新进展。