4D printing of biodegradable elastomers with tailorable thermal response at physiological temperature

材料科学 弹性体 软机器人 数字光处理 3D打印 形状记忆聚合物 光致聚合物 纳米技术 聚合物 玻璃化转变 复合材料 单体 计算机科学 投影机 执行机构 人工智能 计算机视觉
作者
N. Paunović,Denny Meyer,Adva Krivitsky,André R. Studart,Yinyin Bao,Jean‐Christophe Leroux
出处
期刊:Journal of Controlled Release [Elsevier]
卷期号:361: 417-426 被引量:16
标识
DOI:10.1016/j.jconrel.2023.07.053
摘要

4D printing has a great potential for the manufacturing of soft robotics and medical devices. The alliance of digital light processing (DLP) 3D printing and novel shape-memory photopolymers allows for the fabrication of smart 4D-printed medical devices in high resolution and with tailorable functionalities. However, most of the reported 4D-printed materials are nondegradable, which limits their clinical applications. On the other hand, 4D printing of biodegradable shape-memory elastomers is highly challenging, especially when transition points close to physiological temperature and shape fixation under ambient conditions are required. Here, we report the 4D printing of biodegradable shape-memory elastomers with tailorable transition points covering physiological temperature, by using poly(D,L-lactide-co-trimethylene carbonate) methacrylates at various monomer feed ratios. After the programming step, the high-resolution DLP printed stents preserved their folded shape at room temperature, and showed efficient shape recovery at 37 °C. The materials were cytocompatible and readily degradable under physiological conditions. Furthermore, drug-loaded devices with tuneable release kinetics were realized by DLP-printing with resins containing polymers and levofloxacin or nintedanib. This study offers a new perspective for the development of next-generation 4D-printed medical devices.

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