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用于组织工程的基于管状微尺度多壁碳纳米管的支架。

Tubular micro-scale multiwalled carbon nanotube-based scaffolds for tissue engineering.

作者信息

Edwards Sharon L, Church Jeffrey S, Werkmeister Jerome A, Ramshaw John A M

机构信息

CSIRO Materials Science and Engineering, Belmont, Geelong, Victoria, Australia.

出版信息

Biomaterials. 2009 Mar;30(9):1725-31. doi: 10.1016/j.biomaterials.2008.12.031. Epub 2009 Jan 4.

Abstract

In this study we have prepared a tubular knitted scaffold from a 9 ply multiwalled carbon nanotube (MWCNT) yarn and a composite scaffold, formed by electrospinning poly(lactic-co-glycolic acid) (PLGA) nanofibres onto the knitted scaffold. Both structures were assessed for in vitro biocompatibility with NR6 mouse fibroblast cells for up to 22 days and their suitability as tissue engineering scaffolds considered. The MWCNT yarn was found to support cell growth throughout the culture period, with fibroblasts attaching to, and proliferating on, the yarn surface. The knitted tubular scaffold contained large pores that inhibited cell spanning, leading to the formation of cell clusters on the yarn, and an uneven cell distribution on the scaffold surface. The smaller pores, created through electrospinning, were found to promote cell spanning, leading to a uniform distribution of cells on the composite scaffold surface. Evaluation of the electrical and mechanical properties of the knitted scaffold determined resistance levels of 0.9 kOmega/cm, with a breaking load and extension to break approaching 0.7N and 8%, respectively. The PLGA/MWCNT composite scaffold presented in this work not only supports cell growth, but also has the potential to utilize the full range of electrical and mechanical properties that carbon nanotubes have to offer.

摘要

在本研究中,我们用9股多壁碳纳米管(MWCNT)纱线制备了一种管状针织支架,并通过将聚乳酸-乙醇酸共聚物(PLGA)纳米纤维静电纺丝到该针织支架上形成了一种复合支架。对这两种结构与NR6小鼠成纤维细胞进行了长达22天的体外生物相容性评估,并考虑了它们作为组织工程支架的适用性。发现MWCNT纱线在整个培养期间都能支持细胞生长,成纤维细胞附着在纱线表面并在其上增殖。针织管状支架含有大孔,这些大孔抑制细胞跨越,导致在纱线上形成细胞簇,并且支架表面的细胞分布不均匀。通过静电纺丝产生的较小孔隙被发现可促进细胞跨越,从而导致细胞在复合支架表面均匀分布。对针织支架的电学和力学性能评估确定其电阻水平为0.9 kΩ/cm,断裂载荷和断裂伸长率分别接近0.7N和8%。本文介绍的PLGA/MWCNT复合支架不仅支持细胞生长,而且有潜力利用碳纳米管所具备的全部电学和力学性能。

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