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Characterizing the viscoelastic properties of thin hydrogel-based constructs for tissue engineering applications

机译:表征用于组织工程应用的基于水凝胶的薄构造的粘弹性质

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摘要

We present a novel indentation method for characterizing the viscoelastic properties of alginate and agarose hydrogel based constructs, which are often used as a model system of soft biological tissues. A sensitive long working distance microscope was used for measuring the time-dependent deformation of the thin circular hydrogel membranes under a constant load. The deformation of the constructs was measured laterally. The elastic modulus as a function of time can be determined by a large deformation theory based on Mooney–Rivlin elasticity. A viscoelastic theory, Zener model, was applied to correlate the time-dependent deformation of the constructs with various gel concentrations, and the creep parameters can therefore be quantitatively estimated. The value of Young's modulus was shown to increase in proportion with gel concentration. This finding is consistent with other publications. Our results also showed the great capability of using the technique to measure gels with incorporated corneal stromal cells. This study demonstrates a novel and convenient technique to measure mechanical properties of hydrogel in a non-destructive, online and real-time fashion. Thus this novel technique can become a valuable tool for soft tissue engineering.
机译:我们提出了一种新颖的压痕方法,用于表征藻酸盐和琼脂糖基于水凝胶的构建体的粘弹性质,通常将其用作软生物组织的模型系统。使用灵敏的长工作距离显微镜在恒定载荷下测量圆形水凝胶薄膜随时间的变形。横向测量结构的变形。弹性模量随时间的变化可以通过基于Mooney-Rivlin弹性的大变形理论来确定。应用了粘弹性理论Zener模型,将结构随时间的变形与各种凝胶浓度相关联,因此可以定量估计蠕变参数。显示杨氏模量的值与凝胶浓度成比例地增加。这一发现与其他出版物一致。我们的结果还显示了使用该技术测量掺入角膜基质细胞凝胶的强大能力。这项研究演示了一种新颖且方便的技术,可以以无损,在线和实时的方式测量水凝胶的机械性能。因此,该新技术可以成为用于软组织工程的有价值的工具。

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