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碳纳米管复合材料上增强的软骨细胞密度:纳米表面粗糙度和电刺激的联合作用

Enhanced chondrocyte densities on carbon nanotube composites: the combined role of nanosurface roughness and electrical stimulation.

作者信息

Khang Dongwoo, Park Grace E, Webster Thomas J

机构信息

Division of Engineering, Brown University, Providence, Rhode Island 02912, USA.

出版信息

J Biomed Mater Res A. 2008 Jul;86(1):253-60. doi: 10.1002/jbm.a.31803.

Abstract

Simultaneous incorporation of intrinsic nanosurface roughness and external electrical stimulation may maximize the regeneration of articular cartilage tissue more than on nanosmooth, electrically nonstimulated biomaterials. Here, we report enhanced functions of chondrocytes (cartilage synthesizing cells) on electrically and nonelectrically stimulated highly dispersed carbon nanotubes (CNT) in polycarbonate urethane (PCU) compared to, respectively, stimulated pure PCU. Specifically, compared to conventional longitudinal (or vertical) electrical stimulation of chondrocytes on conducting surfaces which require high voltage, we developed a lateral electrical stimulation across CNT/PCU composite films of low voltage that enhanced chondrocyte functions. Chondrocyte adhesion and long-term cell densities (up to 2 days) were enhanced (more than 50%) on CNT/PCU composites compared to PCU alone without electrical stimulation. This study further explained why by measuring greater amounts of initial fibronectin adsorption (a key protein that mediates chondrocyte adhesion) on CNT/PCU composites which were more hydrophilic (than pure PCU) due to greater nanometer roughness. Importantly, the same trend was observed and was even significantly enhanced when chondrocytes were subjected to electrical stimulation (more than 200%) compared to nonstimulated CNT/PCU. For this reason, this study provided direct evidence of the positive role that conductive CNT/PCU films can play in promoting functions of chondrocytes for cartilage regeneration.

摘要

与纳米光滑、无电刺激的生物材料相比,同时引入内在纳米表面粗糙度和外部电刺激可能会使关节软骨组织的再生最大化。在此,我们报告了与分别受到刺激的纯聚碳酸酯聚氨酯(PCU)相比,软骨细胞(软骨合成细胞)在聚碳酸酯聚氨酯(PCU)中受到电刺激和非电刺激的高度分散碳纳米管(CNT)上的功能增强。具体而言,与传统的在导电表面上对软骨细胞进行纵向(或垂直)电刺激(需要高电压)相比,我们开发了一种跨CNT/PCU复合膜的低电压横向电刺激,增强了软骨细胞的功能。与未进行电刺激的单独PCU相比,CNT/PCU复合材料上的软骨细胞粘附和长期细胞密度(长达2天)增强(超过50%)。这项研究通过测量CNT/PCU复合材料上更多的初始纤连蛋白吸附量(一种介导软骨细胞粘附的关键蛋白)进一步解释了原因,由于更大的纳米粗糙度,CNT/PCU复合材料比纯PCU更亲水。重要的是,当软骨细胞受到电刺激时,观察到相同的趋势,并且与未刺激的CNT/PCU相比甚至显著增强(超过200%)。因此,本研究提供了直接证据,证明导电的CNT/PCU膜在促进软骨细胞功能以实现软骨再生方面可以发挥积极作用。

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