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Enzyme-Mediated Ring-Opening Polymerization of Pentadecalactone to Obtain Biodegradable Polymer for Fabrication of Scaffolds for Bone Tissue Engineering

机译:酶介导的五角体内酮的开环聚合,得到可生物降解的聚合物,用于制造骨组织工程的支架

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摘要

The optimization of enzyme-mediated polymerization of pentadecalactone (PDL) was performed to obtain macromolecular products suitable for generation of 3D cell supports (scaffolds) for bone tissue engineering. Such parameters as temperature, monomer/enzyme ratio, and monomer concentration were studied. The maximum molecular weight of synthesized polymers was about 90,000. Methods allowing the introduction of reactive double bonds into polypentadecalactone (polyPDL) structure were developed. The macroporous matrices were obtained by modification of thermoinduced phase separation method.
机译:进行酶介导的五烷酮(PDL)的聚合的优化,得到适用于产生骨组织工程的3D细胞支撑(支架)的大分子产物。研究了温度,单体/酶比和单体浓度的这种参数。合成聚合物的最大分子量约为90,000。开发了允许将反应性双键引入聚蛋白酶(PolyPD1)结构的方法。通过改变热诱导的相分离方法获得大孔矩阵。

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