Chemical Process & Energy Resources Institute, 6th Km Harilaou-Thermi Rd., P.O. Box 60361, 57001 Thessaloniki, Greece.
Department of Chemical Engineering, Aristotle University of Thessaloniki, 54124 Thessaloniki, Greece.
Int J Mol Sci. 2021 Jul 7;22(14):7317. doi: 10.3390/ijms22147317.
The present study deals with the mathematical modeling of crosslinking kinetics of polymer-phenol conjugates mediated by the Horseradish Peroxidase (HRP)-hydrogen peroxide (HO) initiation system. More specifically, a dynamic Monte Carlo (MC) kinetic model is developed to quantify the effects of crosslinking conditions (i.e., polymer concentration, degree of phenol substitution and HRP and HO concentrations) on the gelation onset time; evolution of molecular weight distribution and number and weight average molecular weights of the crosslinkable polymer chains and gel fraction. It is shown that the MC kinetic model can faithfully describe the crosslinking kinetics of a finite sample of crosslinkable polymer chains with time, providing detailed molecular information for the crosslinkable system before and after the gelation point. The MC model is validated using experimental measurements on the crosslinking of a tyramine modified Hyaluronic Acid (HA-Tyr) polymer solution reported in the literature. Based on the rubber elasticity theory and the MC results, the dynamic evolution of hydrogel viscoelastic and molecular properties (i.e., number average molecular weight between crosslinks, , and hydrogel mesh size, ) are calculated.
本研究涉及辣根过氧化物酶(HRP)-过氧化氢(HO)引发体系介导的聚合物-酚缀合物的交联动力学的数学建模。更具体地说,开发了一种动态蒙特卡罗(MC)动力学模型,以定量研究交联条件(即聚合物浓度、酚取代度以及 HRP 和 HO 浓度)对凝胶起始时间的影响;交联聚合物链的分子量分布和数均和重均分子量以及凝胶分数的演变。结果表明,MC 动力学模型可以忠实地描述交联聚合物链在有限时间内的交联动力学,在凝胶点前后为交联体系提供详细的分子信息。使用文献中报道的对酪氨酸改性透明质酸(HA-Tyr)聚合物溶液的交联的实验测量来验证 MC 模型。基于橡胶弹性理论和 MC 结果,计算了水凝胶粘弹性和分子性质(即交联点之间的数均分子量, 和水凝胶网格尺寸, )的动态演化。