Gleadall Andrew, Pan Jingzhe, Kruft Marc-Anton, Kellomäki Minna
Department of Engineering, University of Leicester, Leicester LE1 7RH, UK.
Department of Engineering, University of Leicester, Leicester LE1 7RH, UK.
Acta Biomater. 2014 May;10(5):2233-40. doi: 10.1016/j.actbio.2014.01.017. Epub 2014 Jan 26.
This paper presents an understanding of how initial molecular weight and initial monomer fraction affect the degradation of bioresorbable polymers in terms of the underlying hydrolysis mechanisms. A mathematical model was used to analyse the effects of initial molecular weight for various hydrolysis mechanisms including noncatalytic random scission, autocatalytic random scission, noncatalytic end scission or autocatalytic end scission. Different behaviours were identified to relate initial molecular weight to the molecular weight half-life and to the time until the onset of mass loss. The behaviours were validated by fitting the model to experimental data for molecular weight reduction and mass loss of samples with different initial molecular weights. Several publications that consider initial molecular weight were reviewed. The effect of residual monomer on degradation was also analysed, and shown to accelerate the reduction of molecular weight and mass loss. An inverse square root law relationship was found between molecular weight half-life and initial monomer fraction for autocatalytic hydrolysis. The relationship was tested by fitting the model to experimental data with various residual monomer contents.
本文从潜在的水解机制方面阐述了对初始分子量和初始单体分数如何影响生物可吸收聚合物降解的理解。使用一个数学模型来分析初始分子量对各种水解机制的影响,这些机制包括非催化无规断链、自催化无规断链、非催化端基断链或自催化端基断链。确定了不同的行为,将初始分子量与分子量半衰期以及质量损失开始前的时间联系起来。通过将模型拟合到具有不同初始分子量的样品的分子量降低和质量损失的实验数据,验证了这些行为。回顾了几篇考虑初始分子量的文献。还分析了残留单体对降解的影响,结果表明其会加速分子量的降低和质量损失。对于自催化水解,发现分子量半衰期与初始单体分数之间存在反平方根定律关系。通过将模型拟合到具有各种残留单体含量的实验数据来检验这种关系。