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一种用于骨组织工程的新型碳纳米管-海藻酸盐-羟基磷灰石三组分复合支架的研发。

Development of a new carbon nanotube-alginate-hydroxyapatite tricomponent composite scaffold for application in bone tissue engineering.

作者信息

Rajesh Rajendiran, Ravichandran Y Dominic

机构信息

Organic Chemistry Division, School of Advanced Sciences, VIT University, Vellore, India.

出版信息

Int J Nanomedicine. 2015 Oct 1;10 Suppl 1(Suppl 1):7-15. doi: 10.2147/IJN.S79971. eCollection 2015.

Abstract

In recent times, tricomponent scaffolds prepared from naturally occurring polysaccharides, hydroxyapatite, and reinforcing materials have been gaining increased attention in the field of bone tissue engineering. In the current work, a tricomponent scaffold with an oxidized multiwalled carbon nanotube (fMWCNT)-alginate-hydroxyapatite with the required porosity was prepared for the first time by a freeze-drying method and characterized using analytical techniques. The hydroxyapatite for the scaffold was isolated from chicken bones by thermal calcination at 800°C. The Fourier transform infrared spectra and X-ray diffraction data confirmed ionic interactions and formation of the fMWCNT-alginate-hydroxyapatite scaffold. Interconnected porosity with a pore size of 130-170 µm was evident from field emission scanning electron microscopy. The total porosity calculated using the liquid displacement method was found to be 93.85%. In vitro biocompatibility and cell proliferation on the scaffold was checked using an MG-63 cell line by 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide assay and cell attachment by Hoechst stain assay. In vitro studies showed better cell proliferation, cell differentiation, and cell attachment on the prepared scaffold. These results indicate that this scaffold could be a promising candidate for bone tissue engineering.

摘要

近年来,由天然多糖、羟基磷灰石和增强材料制备的三元支架在骨组织工程领域越来越受到关注。在当前工作中,首次通过冷冻干燥法制备了具有所需孔隙率的氧化多壁碳纳米管(fMWCNT)-海藻酸盐-羟基磷灰石三元支架,并使用分析技术对其进行了表征。支架用的羟基磷灰石是通过在800°C下热煅烧从鸡骨中分离出来的。傅里叶变换红外光谱和X射线衍射数据证实了fMWCNT-海藻酸盐-羟基磷灰石支架的离子相互作用和形成。场发射扫描电子显微镜显示出孔径为130-170 µm的相互连通的孔隙率。使用液体置换法计算的总孔隙率为93.85%。通过3-(4,5-二甲基噻唑-2-基)-2,5-二苯基四氮唑溴盐测定法使用MG-63细胞系检查了支架上的体外生物相容性和细胞增殖,并通过Hoechst染色测定法检查了细胞附着情况。体外研究表明,在制备的支架上细胞增殖、细胞分化和细胞附着情况更好。这些结果表明,这种支架可能是骨组织工程的一个有前途的候选材料。

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