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

粘弹性 材料科学 缩进 弹性(物理) 蠕动 变形(气象学) 自愈水凝胶 弹性模量 琼脂糖 复合材料 模数 生物医学工程 组织工程 生物系统 化学 色谱法 高分子化学 医学 生物化学 生物
作者
Mark Ahearne,Ying Yang,Alicia J. El Haj,K. Then,Kuo‐Kang Liu
出处
期刊:Journal of the Royal Society Interface [The Royal Society]
卷期号:2 (5): 455-463 被引量:278
标识
DOI:10.1098/rsif.2005.0065
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.

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