变硬
形状记忆合金
脚手架
热固性聚合物
肿胀 的
变形
形状记忆聚合物
材料科学
执行机构
3D打印
智能材料
变形(气象学)
生物医学工程
软机器人
复合材料
纳米技术
计算机科学
医学
人工智能
计算机视觉
作者
Bo Liu,Hui Li,Fengzhen Meng,Ziyang Xu,Liuzhi Hao,Yuan Yao,Hao Zhu,Chenmin Wang,Jun Wu,Shaoquan Bian,Willima W Lu,Wenguang Liu,Haobo Pan,Xiaoli Zhao
标识
DOI:10.1038/s41467-024-45938-0
摘要
Abstract The power of three-dimensional printing in designing personalized scaffolds with precise dimensions and properties is well-known. However, minimally invasive implantation of complex scaffolds is still challenging. Here, we develop amphiphilic dynamic thermoset polyurethanes catering for multi-material four-dimensional printing to fabricate supportive scaffolds with body temperature-triggered shape memory and water-triggered programmable deformation. Shape memory effect enables the two-dimensional printed pattern to be fixed into temporary one-dimensional shape, facilitating transcatheter delivery. Upon implantation, the body temperature triggers shape recovery of the one-dimensional shape to its original two-dimensional pattern. After swelling, the hydrated pattern undergoes programmable morphing into the desired three-dimensional structure because of swelling mismatch. The structure exhibits unusual soft-to-stiff transition due to the water-driven microphase separation formed between hydrophilic and hydrophobic chain segments. The integration of shape memory, programmable deformability, and swelling-stiffening properties makes the developed dynamic thermoset polyurethanes promising supportive void-filling scaffold materials for minimally invasive implantation.
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