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The effect of gamma radiation on molecular stability and mechanical properties of biodegradable polyurethanes for medical applications

机译:γ射线对医用生物降解聚氨酯分子稳定性和机械性能的影响

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摘要

Experimental biodegradable medical polyurethanes with varying hydrophilic-to-hydrophobic segment ratios based on hydro-philic poly(ethylene oxide) MW = 600 (PEO) and hydrophobic poly(ε-caprolactone) diol MW = 530 and 2000 (PCL), were exposed to gamma radiation at the standard dose of 25 kGy used for sterilization. Irradiated polymers degraded to a various extent, this being associated with a reduction of mechanical properties. For the more hydrophobic polyurethanes based exclusively on poly-caprolactone diol the decrease of molecular weight was in the range of 12―30% and the decrease of tensile strength was 12%. For the more hydrophilic polyurethanes based on mixtures of polycaprolactone diol and polyethylene oxide the decrease of molecular weight was in the range of 30―50% and the decrease of tensile strength was 50%. Gamma radiation insignificantly affected surface roughness of hydrophobic polycaprolactone-based polyurethanes and caused a slight increase of contact angle. For the hydrophilic polymers based on polycaprolactone diol and polyethylene oxide, gamma radiation increased by 36―76% surface roughness and decreased by 20―45% contact angle. There was also an evident change in thermal properties of the irradiated materials.
机译:将基于亲水聚(环氧乙烷)MW = 600(PEO)和疏水聚(ε-己内酯)二醇MW = 530和2000(PCL)的不同亲水/疏水链段比的实验性可生物降解医用聚氨酯暴露于以25 kGy的标准剂量进行伽玛射线灭菌。辐照的聚合物降解到不同程度,这与机械性能的降低有关。对于仅基于聚己内酯二醇的疏水性更高的聚氨酯,分子量的降低范围为12%至30%,拉伸强度的降低范围为12%。对于基于聚己内酯二醇和聚环氧乙烷的混合物的亲水性更高的聚氨酯,分子量的降低范围为30%至50%,拉伸强度的降低范围为50%。 γ辐射对疏水性聚己内酯基聚氨酯的表面粗糙度影响不明显,并且导致接触角略有增加。对于基于聚己内酯二醇和聚环氧乙烷的亲水性聚合物,γ辐射的表面粗糙度增加36-76%,接触角减小20-45%。辐照材料的热性能也发生了明显变化。

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