Wolfson Centre for Inherited Neuromuscular Disease, RJAH Orthopaedic Hospital, Oswestry, Shropshire SY10 7AG, United Kingdom.
Mater Sci Eng C Mater Biol Appl. 2013 Oct;33(7):4274-9. doi: 10.1016/j.msec.2013.06.017. Epub 2013 Jun 26.
The development of scaffolds and templates is an essential aspect of tissue engineering. We show that thick (>0.5 mm) vertically aligned carbon nanotube films, made by chemical vapour deposition, can be used as biocompatible substrates for the directional alignment of mouse muscle cells where the cells grow on the exposed sides of the films. Ultra high resolution scanning electron microscopy reveals that the films themselves consist mostly of small diameter (10 nm) multi-wall carbon nanotubes of wavy morphology with some single wall carbon nanotubes. Our findings show that for this alignment to occur the nanotubes must be in pristine condition. Mechanical wiping of the films to create directional alignment is detrimental to directional bioactivity. Larger areas for study have been formed from a composite of multiply stacked narrow strips of nanotubes wipe-transferred onto elastomer supports. These composite substrates appear to show a useful degree of alignment of the cells.
支架和模板的开发是组织工程的一个重要方面。我们表明,通过化学气相沉积制备的厚度大于 0.5 毫米的垂直排列碳纳米管膜可用作生物相容的基底,用于定向排列小鼠肌肉细胞,其中细胞在膜的暴露侧生长。超高分辨率扫描电子显微镜显示,这些膜本身主要由小直径(10nm)的具有波纹形态的多壁碳纳米管组成,还有一些单壁碳纳米管。我们的研究结果表明,为了实现这种定向排列,纳米管必须处于原始状态。通过机械擦拭膜来实现定向排列会对定向生物活性产生不利影响。通过将多次堆叠的纳米管窄条擦拭转移到弹性体支撑物上,形成了更大的研究区域。这些复合基底似乎显示出细胞的一定程度的定向排列。