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采用纳米划痕技术定量分析碳纳米管诱导成骨细胞在羟基磷灰石上的黏附。

Quantification of carbon nanotube induced adhesion of osteoblast on hydroxyapatite using nano-scratch technique.

机构信息

Nanomechanics and Nanotribology Laboratory, Florida International University, Miami, FL 33174, USA.

出版信息

Nanotechnology. 2011 Sep 2;22(35):355703. doi: 10.1088/0957-4484/22/35/355703. Epub 2011 Aug 5.

Abstract

This paper explores the nano-scratch technique for measuring the adhesion strength of a single osteoblast cell on a hydroxyapatite (HA) surface reinforced with carbon nanotubes (CNTs). This technique efficiently separates out the contribution of the environment (culture medium and substrate) from the measured adhesion force of the cell, which is a major limitation of the existing techniques. Nano-scratches were performed on plasma sprayed hydroxyapatite (HA) and HA-CNT coatings to quantify the adhesion of the osteoblast. The presence of CNTs in HA coating promotes an increase in the adhesion of osteoblasts. The adhesion force and energy of an osteoblast on a HA-CNT surface are 17 ± 2 µN/cell and 78 ± 14 pJ/cell respectively, as compared to 11 ± 2 µN/cell and 45 ± 10 pJ/cell on a HA surface after 1 day of incubation. The adhesion force and energy of the osteoblasts increase on both the surfaces with culture periods of up to 5 days. This increase is more pronounced for osteoblasts cultured on HA-CNT. Staining of actin filaments revealed a higher spreading and attachment of osteoblasts on a surface containing CNTs. The affinity of CNTs to conjugate with integrin and other proteins is responsible for the enhanced attachment of osteoblasts. Our results suggest that the addition of CNTs to surfaces used in medical applications may be beneficial when stronger adhesion of osteoblasts is desired.

摘要

本文探讨了纳米划痕技术在测量经碳纳米管(CNT)增强的羟基磷灰石(HA)表面上单个人骨细胞粘附强度中的应用。该技术有效地将细胞的环境(培养基和基底)的贡献从测量的粘附力中分离出来,这是现有技术的主要限制。对等离子喷涂羟基磷灰石(HA)和 HA-CNT 涂层进行纳米划痕,以量化骨细胞的粘附性。HA 涂层中 CNT 的存在促进了骨细胞的粘附。与培养 1 天后的 HA 表面上的 11 ± 2 µN/cell 和 45 ± 10 pJ/cell 相比,HA-CNT 表面上骨细胞的粘附力和能量分别为 17 ± 2 µN/cell 和 78 ± 14 pJ/cell。在培养至 5 天的时间内,骨细胞在两个表面上的粘附力和能量均增加。在含有 CNT 的表面上,骨细胞的增加更为明显。肌动蛋白丝染色显示,含有 CNT 的表面上骨细胞的铺展和附着程度更高。CNT 与整合素和其他蛋白质结合的亲和力是骨细胞附着增强的原因。我们的结果表明,在需要增强骨细胞粘附力的情况下,在医疗应用中使用的表面添加 CNT 可能是有益的。

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