首页> 外文期刊>Journal of biomedical materials research, Part A >A novel fabrication method to create a thick collagen bundle composed of uniaxially aligned fibrils: An essential technology for the development of artificial tendon/ligament matrices
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A novel fabrication method to create a thick collagen bundle composed of uniaxially aligned fibrils: An essential technology for the development of artificial tendon/ligament matrices

机译:创建由单轴排列的原纤维组成的厚胶原束的新颖制造方法:开发人工腱/韧带基质的一项重要技术

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In this study, we developed a fabrication method for thick collagen gel bundles comprising uniaxially aligned fibrils of sufficient size for filling defects in ligament tissues. The fabrication involved rotary shearing to dense collagen sols using a rheometer and then warming them from 23 degrees C to 37 degrees C to trigger gelation upon rotation. Gelation due to collagen fibril formation was accelerated by increased concentrations of neutral phosphate buffer, and fibril alignment occurred within 20 s during the early stage of rapid gelation. Fabrication of gels was completed with slippage between gels and the movable upper plate, and well-aligned fibrils along the rotation direction were observed in the marginal regions of disc-shaped gels. Gel thickness could be increased from 1 to 3 mm with homogeneous alignment of fibrils in the entire sample. The alignment of fibrils improved mechanical properties against tensile loads that were placed parallel to the alignment axis. Elongation of cultured fibroblast along the alignment was observed on the gels. The present method will enable the bottom-up fabrication of an artificial tendon for ligament reconstruction and repair. (C) 2015 Wiley Periodicals, Inc.
机译:在这项研究中,我们开发了一种厚胶原蛋白凝胶束的制造方法,该方法包括单轴排列的原纤维,该原纤维的大小足以填充韧带组织中的缺陷。制作过程涉及使用流变仪将剪切力剪切成致密的胶原蛋白溶胶,然后将其从23摄氏度加热至37摄氏度,从而在旋转时引发凝胶化。中性磷酸盐缓冲液的浓度增加会加速由于胶原蛋白原纤维形成而引起的凝胶化,并且在快速凝胶化的早期,在20 s内就会发生原纤维排列。通过在凝胶和可移动的上板之间滑动而完成了凝胶的制造,并且在盘状凝胶的边缘区域中观察到沿着旋转方向的良好排列的原纤维。凝胶厚度可以从1毫米增加到3毫米,并且整个样品中的原纤维均一排列。原纤维的排列改善了机械性能,可抵抗平行于排列轴放置的拉伸载荷。在凝胶上观察到培养的成纤维细胞沿排列方向的延伸。本方法将能够自下而上地制造用于韧带重建和修复的人造腱。 (C)2015威利期刊公司

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