Luo Rongmo, Li Hua, Lam Khin Yong
School of Mechanical and Aerospace Engineering, Nanyang Technological University, 50 Nanyang Avenue, Singapore 639798, Republic of Singapore.
Biomaterials. 2009 Feb;30(4):690-700. doi: 10.1016/j.biomaterials.2008.10.008. Epub 2008 Nov 6.
Many environmental conditions can influence the mechanical characteristics of the glucose-sensitive hydrogels. In this paper, a multi-effect-coupling glucose-stimulus (MECglu) model is developed to study the influence of environmental solution pH on the swelling behavior of soft smart hydrogels responding to change in surrounding blood glucose concentration. In order to characterize the chemo-electro-mechanical behaviors of the hydrogels, the model is composed of the Nernst-Planck type of diffusion-reaction partial differential equations for mobile species with consideration of the enzyme reaction catalyzed by the glucose oxidase and the catalase, the Poisson equation for electric potential, and the nonlinear equilibrium equation for mechanical large deformation of the glucose-sensitive hydrogel. In the MECglu model, the formulation of the fixed charge groups bound onto the corsslinked polymeric network is associated with the change of the ambient solution pH. Using these nonlinear coupled partial differential equations, we demonstrate that the computational mechanical deformation by the MECglu model consists well with the experimental observations published in the range of practical physiological glucose concentration from 0 to 16.5 mM (300 mg/ml). The simulations are also carried out for analysis of the influences of physiological pH on the distributive profiles of reacting and diffusive species concentrations and the electric potential as well as the mechanical deformation of the glucose-sensitive hydrogels. The simulations by the model can efficiently support the design and optimization of the insulin delivery system based on the glucose-sensitive hydrogels with the immobilized glucose oxidase and catalase.
许多环境条件会影响葡萄糖敏感水凝胶的力学特性。本文建立了一种多效应耦合葡萄糖刺激(MECglu)模型,以研究环境溶液pH值对软智能水凝胶响应周围血糖浓度变化时溶胀行为的影响。为了表征水凝胶的化学-电-力学行为,该模型由考虑葡萄糖氧化酶和过氧化氢酶催化的酶反应的移动物种的能斯特-普朗克型扩散-反应偏微分方程、电势的泊松方程以及葡萄糖敏感水凝胶机械大变形的非线性平衡方程组成。在MECglu模型中,结合在交联聚合物网络上的固定电荷基团的配方与环境溶液pH值的变化相关。利用这些非线性耦合偏微分方程,我们证明了MECglu模型的计算机械变形与在0至16.5 mM(300 mg/ml)的实际生理葡萄糖浓度范围内发表的实验观察结果吻合良好。还进行了模拟,以分析生理pH值对反应和扩散物种浓度分布曲线、电势以及葡萄糖敏感水凝胶机械变形的影响。该模型的模拟可以有效地支持基于固定有葡萄糖氧化酶和过氧化氢酶的葡萄糖敏感水凝胶的胰岛素输送系统的设计和优化。