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Synthesis of highly elastic biocompatible polyurethanes based on bio-based isosorbide and poly(tetramethylene glycol) and their properties

机译:基于生物异山梨醇和聚丁二醇的高弹性生物相容性聚氨酯的合成及其性能

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摘要

Bio-based high elastic polyurethanes were prepared from hexamethylene diisocyanate and various ratios of isosorbide to poly(tetramethylene glycol) as a diol by a simple one-shot bulk polymerization without a catalyst. Successful synthesis of the polyurethanes was confirmed by Fourier transform-infrared spectroscopy and 1H nuclear magnetic resonance. Thermal properties were determined by differential scanning calorimetry and thermogravimetric analysis. The glass transition temperature was −47.8℃. The test results showed that the poly(tetramethylene glycol)/isosorbide-based elastomer exhibited not only excellent stress–strain properties but also superior resilience to the existing polyether-based polyurethane elastomers. The static and dynamic properties of the polyether/isosorbide-based thermoplastic elastomer were more suitable for dynamic applications. Moreover, such rigid diols impart biocompatible and bioactive properties to thermoplastic polyurethane elastomers. Degradation tests performed at 37℃ in phosphate buffer solution showed a mass loss of 4–9% after 8 weeks, except for the polyurethane with the lowest isosorbide content, which showed an initial rapid weight loss. These polyurethanes offer significant promise due to soft, flexible and biocompatible properties for soft tissue augmentation and regeneration.
机译:生物基高弹性聚氨酯是由六亚甲基二异氰酸酯和异山梨醇与聚(四亚甲基二醇)的各种比例的二醇,通过简单的一次一次性本体聚合而无需催化剂制备的。傅里叶变换红外光谱和 1 H核磁共振证实了聚氨酯的成功合成。通过差示扫描量热法和热重分析法测定热性能。玻璃化温度为-47.8℃。测试结果表明,聚丁二醇/异山梨醇基弹性体不仅表现出出色的应力应变性能,而且还具有比现有的聚醚基聚氨酯弹性体更高的回弹性。聚醚/异山梨醇基热塑性弹性体的静态和动态特性更适合动态应用。此外,这种硬质二醇赋予热塑性聚氨酯弹性体生物相容性和生物活性。在37℃的磷酸盐缓冲溶液中进行的降解试验显示8周后质量损失为4–9%,但异山梨醇含量最低的聚氨酯显示出最初的快速失重。这些聚氨酯由于具有柔软,柔韧性和生物相容性的特性,因此对于软组织的增强和再生具有重要的意义。

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