Constitutive modelling of hydrolytic degradation in hydrogels

Constitutive modelling of hydrolytic degradation in hydrogels
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DOI:
10.1016/j.jmps.2022.105016
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发表时间:
2022-08
影响因子:
5.3
通讯作者:
Zhouzhou Pan;L. Brassart
Zhouzhou Pan;L. Brassart
中科院分区:
工程技术2区
文献类型:
--
作者:
Zhouzhou Pan;L. Brassart

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可生物降解的合成水凝胶已成为组织工程和药物/细胞递送应用的有前途的材料。然而,它们的成功实施需要精确理解在机械性能、膨胀和质量损失方面的降解响应。在这项工作中,我们开发了一个热力学一致的连续体框架和本构模型,用于耦合大变形和水凝胶中的水解降解。特别是,我们提出了基于描述水解过程中不断变化的网络拓扑结构的弹性模量和聚合物质量损失演变的本构模型。该理论通过两种不同网络结构的模型水凝胶体系的实验数据进行了验证,即可生物降解的tetrai - peg水凝胶和PLA-b-PEG-b-PLA水凝胶。我们还在一个有限元软件中实现了我们的模型。我们表明,我们的模型能够在生物医学应用相关的场景中模拟降解引起的非均匀肿胀。我们的理论和本构模型可用于设计具有可控降解行为的水凝胶。
Biodegradable synthetic hydrogels have emerged as promising materials for tissue engineering and drug/cell delivery applications. However, their successful implementation requires precise understanding of the degradation response in terms of mechanical properties, swelling, and mass loss. In this work, we develop a thermodynamically-consistent continuum framework and constitutive models for coupled large deformation and hydrolytic degradation in hydrogels. In particular, we propose constitutive models for the evolution of elastic modulus and polymer mass loss based on a description of the evolving network topology during hydrolysis. The theory is validated against experimental data for two model hydrogel systems with different network architectures, namely biodegradable Tetra-PEG hydrogels and PLA-b-PEG-b-PLA hydrogels. We have also implemented our model in a finite element software. We show that our model is capable of simulating degradation-induced heterogeneous swelling in scenarios relevant to biomedical applications. Our theory and constitutive models could be useful for the design of hydrogels with controlled degradation behaviour.