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Biodegradable polyurethanes from crystalline prepolymers

机译:结晶性预聚物可生物降解的聚氨酯

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Polyurethanes in the solid state are commonly used in many structural and medical applications. They are obviously obtained by the polyaddition reaction, where usually ethylene glycol is used as the chain extender. This paper deals with the fabrication of polyurethanes from crystalline prepolymers where water is used as a chain extender. Biodegradable polyurethanes were synthesized from: poly(ε-capro-lactono)diol (PCL), 4,4'methylenebis(cyclohexyl) isocyanate (HMDI) and distilled water (w) as a chain extender. The prepolymer was crystallized at three different temperatures: 7, 22 and 30 ℃, respectively. The materials were subjected to degradation in a solution of phosphate buffered saline (PBS) at the temperature of 37 ℃, where the solution was changed every week. The results of the physical, mechanical and thermal properties, as well as sample's surface observations after the degradation are presented in the comparison to polyurethane obtained in a polyaddition reaction with ethylene glycol as a chain extender. Biodegradable polyurethanes obtained from crystalline prepolymers extended by water exhibit better mechanical properties and higher degradation rate in a solution of phosphate buffered saline (PBS) at the temperature of 37 ℃ than biodegradable polyurethanes obtained by the polyaddition reaction with the application of ethylene glycol as a chain extender.
机译:固态聚氨酯通常用于许多结构和医学应用中。它们显然是通过加聚反应获得的,通常将乙二醇用作扩链剂。本文涉及由结晶预聚物制备聚氨酯,其中水用作扩链剂。可生物降解的聚氨酯是由以下物质合成的:聚(ε-己内酯)二醇(PCL),4,4'亚甲基双(环己基)异氰酸酯(HMDI)和蒸馏水(w)作为扩链剂。预聚物在三种不同的温度下分别结晶:7、22和30℃。在温度为37℃的磷酸盐缓冲盐水(PBS)溶液中对材料进行降解,每周更换一次溶液。物理,机械和热性能的结果,以及降解后样品的表面观察结果与在以乙二醇为扩链剂的加聚反应中获得的聚氨酯进行了比较。由结晶的预聚物经水扩展得到的可生物降解的聚氨酯在37℃的磷酸盐缓冲盐水(PBS)溶液中显示出比通过以乙二醇为链的加成反应获得的可生物降解的聚氨酯更好的机械性能和更高的降解速率。补充剂。

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