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Online Monitoring the Mechanical Remodeling of Hydrogels by Corneal Fibroblasts

机译:在线监测角膜成纤维细胞对水凝胶的机械重塑

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Cell seeded hydrogels provide a useful model for examining cell behavior and matrix remodeling in-vitro. Fi broblasts are capable of manipulating the mechanical behavior of tissues by attaching to their surroundings matrix and apply ing strain. Any resulting change in the mechanical properties of the matrix can in turn affect the cells behavior. In this study, a non-destructive spherical indentation technique was used to examine the change in mechanical properties of colla gen hydrogels seeded with either human corneal fibroblasts or human keratocytes over prolonged culture periods. Cell seeded hydrogels were clamped between two transparent circular rings and a sphere was placed on top of them, causing them to deform. The deformation displacement was measured using a CCD camera system and applied to a theoretical model to calculate the mechanical properties of each hydrogel. The non destructive on-line nature of this technique enables repeated measurements the same hydrogels at several different time points thus enabling the change in mechanical behavior of the hydrogels resulting from corneal fibroblasts remodeling to be examined. In this particular study, the effect of different cul ture medium on the cell behavior was investigated. The spheri cal indentation technique has also been used to examine the effect that different drugs and chemicals have on the cells ability to remodel of the hydrogels including MMP and actin inhibitors.
机译:细胞接种的水凝胶为体外检查细胞行为和基质重塑提供了有用的模型。成纤维细胞能够通过附着在其周围的基质上并施加应变来操纵组织的机械行为。基质机械性能的任何变化都会反过来影响细胞的行为。在这项研究中,使用非破坏性球形压痕技术检查了在较长的培养期内接种人角膜成纤维细胞或人角膜细胞的胶原蛋白水凝胶的机械性能变化。将细胞接种的水凝胶夹在两个透明的圆环之间,并在其顶部放置一个球体,使其变形。使用CCD相机系统测量变形位移,并将其应用于理论模型以计算每种水凝胶的机械性能。该技术的非破坏性在线性质使得能够在几个不同的时间点重复测量相同的水凝胶,从而能够检查由于角膜成纤维细胞重塑而导致的水凝胶的机械性能变化。在这项特殊研究中,研究了不同文化培养基对细胞行为的影响。球形压痕技术也已被用于检验不同药物和化学物质对细胞重构包括MMP和肌动蛋白抑制剂的水凝胶的能力的影响。

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