Human dermal fibroblasts entrapped in fibrin gels cast in cross-shaped (cruciform) geometries with 1:1 and 1:0.5 ratios of arm widths were studied to assess whether tension and alignment of the cells and fibrils affected ECM deposition. The cruciforms of contrasting geometry (symmetric vs. asymmetric), which developed different fiber alignment patterns, were harvested at 2, 5, and 10Â weeks of culture. Cruciforms were subjected to planar biaxial testing, polarimetric imaging, DNA and biochemical analyses, histological staining, and SEM imaging. As the cruciforms compacted and developed fiber alignment, fibrin was degraded, and elastin and collagen were produced in a geometry-dependent manner. Using a continuum mechanical model that accounts for direction-dependent stress due to cell traction forces and cell contact guidance with aligned fibers that occurs in the cruciforms, the mechanical stress environment was concluded to influence collagen deposition, with deposition being the greatest in the narrow arms of the asymmetric cruciform where stress was predicted to be the largest.
Initial fiber alignment pattern alters extracellular matrix synthesis in fibroblast-populated fibrin gel cruciforms and correlates with predicted tension.
初始纤维排列模式会改变成纤维细胞填充的纤维蛋白凝胶十字形中的细胞外基质合成,并与预测的张力相关
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作者:Sander E A, Barocas V H, Tranquillo R T
| 期刊: | Annals of Biomedical Engineering | 影响因子: | 5.400 |
| 时间: | 2011 | 起止号: | 2011 Feb;39(2):714-29 |
| doi: | 10.1007/s10439-010-0192-2 | 研究方向: | 细胞生物学 |
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