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首页> 外文期刊>Biomaterials >Solvent-free fabrication of micro-porous polyurethane amide and polyurethane-urea scaffolds for repair and replacement of the knee-joint meniscus.
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Solvent-free fabrication of micro-porous polyurethane amide and polyurethane-urea scaffolds for repair and replacement of the knee-joint meniscus.

机译:无溶剂制备微孔聚氨酯酰胺和聚氨酯-尿素支架,用于修复和置换膝关节半月板。

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摘要

New porous polyurethane urea and polyurethane amide scaffolds for meniscal reconstruction have been developed in a solvent-free process. As soft segments, copolymers of 50/50 L-lactide/epsilon-caprolactone have been used. After terminating the soft segment with diisocyanates, chain extension was performed with adipic acid and water. Reaction between the isocyanate groups and adipic acid or water provides carbon dioxide and results in a porous polymer. Extra hydroxyl-terminated prepolymer was added in order to regulate the amount of carbon dioxide formed in the foaming reaction. Furthermore, salt crystals ranging in size from 150 to 355 microm were added in order to induce macroporosity. The pore size was regulated by addition of surfactant and by the use of ultrasonic waves. The resulting porous polymer scaffolds exhibit good mechanical properties like a high-compression modulus of 150 kPa. Chain extension with adipic acid results in better mechanical properties due to better defined hard segments. This results from the lower nucleophilicity of carboxylic acids compared to water and alcohols. By adjusting the reaction conditions, materials in which macropores are interconnected by micropores can be obtained. On degradation only non-toxic products will be released; importantly, the materials were obtained by a simple, reproducible and solvent-free procedure.
机译:用于半月板重建的新型多孔聚氨酯尿素和聚氨酯酰胺支架是在无溶剂工艺中开发的。作为软链段,已使用50/50 L-丙交酯/ε-己内酯的共聚物。用二异氰酸酯终止软链段后,用己二酸和水进行扩链。异氰酸酯基团与己二酸或水之间的反应产生二氧化碳,并产生多孔聚合物。为了调节在发泡反应中形成的二氧化碳的量,加入额外的羟基封端的预聚物。此外,为了诱导大孔性,加入了大小为150至355微米的盐晶体。通过添加表面活性剂并通过使用超声波来调节孔径。所得的多孔聚合物支架表现出良好的机械性能,例如150kPa的高压缩模量。由于更好地定义了硬链段,使用己二酸进行扩链可产生更好的机械性能。这是由于与水和醇相比,羧酸的亲核性较低。通过调节反应条件,可以获得其中大孔通过微孔相互连接的材料。降解时,仅释放无毒产品;重要的是,这些材料是通过简单,可重现和无溶剂的程序获得的。

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