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Ultra Low Density and Highly Crosslinked Biocompatible Shape Memory Polyurethane Foams

机译:超低密度和高度交联的生物相容性形状记忆聚氨酯泡沫

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摘要

We report the development of highly chemically crosslinked, ultra low density (~0.015 g/cc) polyurethane shape memory foams synthesized from symmetrical, low molecular weight and branched hydroxyl monomers. Sharp single glass transitions (Tg) customizable in the functional range of 45–70 °C were achieved. Thermomechanical testing confirmed shape memory behavior with 97–98% shape recovery over repeated cycles, a glassy storage modulus of 200–300 kPa and recovery stresses of 5–15 kPa. Shape holding tests under constrained storage above the Tg showed stable shape memory. A high volume expansion of up to 70 times was seen on actuation of these foams from a fully compressed state. Low in-vitro cell activation induced by the foam compared to controls demonstrates low acute bio-reactivity. We believe these porous polymeric scaffolds constitute an important class of novel smart biomaterials with multiple potential applications.
机译:我们报道了高度化学交联的超低密度(〜0.015g / cc)聚氨酯形状记忆泡沫的开发,从对称,低分子量和支链羟基单体合成。实现了在45-70°C的功能范围内可定制的尖锐单玻璃过渡(TG)。热机械测试证实了形状的记忆行为,在重复循环中具有97-98%的形状恢复,玻璃状储存量为200-300kPa,恢复应力为5-15kPa。在TG上方的受约束存储下的形状保持测试显示稳定的形状记忆。在从完全压缩状态下致动这些泡沫,可以看到高达70倍的高容量膨胀。泡沫与对照相比,泡沫诱导的低体外细胞活化证明了低急性生物反应性。我们认为,这些多孔聚合物支架构成了具有多种潜在应用的重要组织智能生物材料。

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