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碳纳米管增强壳聚糖薄膜:一种用于心血管组织工程的新型生物材料的力学性能和细胞反应

Carbon nanotubes reinforced chitosan films: mechanical properties and cell response of a novel biomaterial for cardiovascular tissue engineering.

作者信息

Kroustalli A, Zisimopoulou A E, Koch S, Rongen L, Deligianni D, Diamantouros S, Athanassiou G, Kokozidou M, Mavrilas D, Jockenhoevel S

机构信息

Laboratory of Biomechanics and Biomedical Engineering, Department of Mechanical Engineering & Aeronautics, University of Patras, Patras, Greece.

出版信息

J Mater Sci Mater Med. 2013 Dec;24(12):2889-96. doi: 10.1007/s10856-013-5029-8. Epub 2013 Aug 25.

Abstract

Carbon nanotubes have been proposed as fillers to reinforce polymeric biomaterials for the strengthening of their structural integrity to achieve better biomechanical properties. In this study, a new polymeric composite material was introduced by incorporating various low concentrations of multiwalled carbon nanotubes (MWCNTs) into chitosan (CS), aiming at achieving a novel composite biomaterial with superior mechanical and biological properties compared to neat CS, in order to be used in cardiovascular tissue engineering applications. Both mechanical and biological characteristics in contact with the two relevant cell types (endothelial cells and vascular myofibroblasts) were studied. Regarding the mechanical behavior of MWCNT reinforced CS (MWCNT/CS), 5 and 10 % concentrations of MWCNTs enhanced the mechanical behavior of CS, with that of 5 % exhibiting a superior mechanical strength compared to 10 % concentration and neat CS. Regarding biological properties, MWCNT/CS best supported proliferation of endothelial and myofibroblast cells, MWCNTs and MWCNT/CS caused no apoptosis and were not toxic of the examined cell types. Conclusively, the new material could be suitable for tissue engineering (TE) and particularly for cardiovascular TE applications.

摘要

碳纳米管已被提议作为增强聚合物生物材料的填料,以加强其结构完整性,从而获得更好的生物力学性能。在本研究中,通过将各种低浓度的多壁碳纳米管(MWCNT)掺入壳聚糖(CS)中,引入了一种新型聚合物复合材料,旨在获得一种与纯CS相比具有优异机械和生物学性能的新型复合生物材料,以便用于心血管组织工程应用。研究了与两种相关细胞类型(内皮细胞和平滑肌成纤维细胞)接触时的机械和生物学特性。关于MWCNT增强CS(MWCNT/CS)的力学行为,5%和10%浓度的MWCNT增强了CS的力学行为,其中5%浓度的MWCNT/CS表现出比10%浓度和纯CS更高的机械强度。关于生物学特性,MWCNT/CS最有利于内皮细胞和平滑肌成纤维细胞的增殖,MWCNT和MWCNT/CS不会导致所检测细胞类型的凋亡,也没有毒性。总之,这种新材料可能适用于组织工程(TE),特别是心血管TE应用。

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