材料科学
光引发剂
生物相容性
纳米技术
3D打印
生物相容性材料
乙二醇
甲基丙烯酸酯
聚合物
化学工程
复合材料
共聚物
生物医学工程
冶金
单体
工程类
医学
作者
Celia Rufo‐Martín,Diego Infante‐García,José Díaz‐Álvarez,H. Miguélez,George Youssef
标识
DOI:10.1002/adma.202412338
摘要
Abstract As personalized medicine rapidly evolves, there is a critical demand for advanced biocompatible materials surpassing current additive manufacturing capabilities. This study presents a novel printable bioresin engineered with tunable mechanical, thermal, and biocompatibility properties through strategic molecular modifications. The study introduces a new bioresin comprising methyl methacrylate (MMA), ethylene glycol dimethacrylate (EGDMA), and a photoinitiator, which is further enhanced by incorporating high molecular weight polymethyl methacrylate (PMMA) to improve biostability and mechanical performance. The integration of printable PMMA presents several synthesis and processing challenges, necessitating substantial modifications to the 3D printing process. Additionally, the bioresin is functionalized with antibacterial silver oxide and bone‐growth‐promoting hydroxyapatite at various weight ratios to extend its application further. The results demonstrate the agile printability of the novel bioresin and its potential for transformative impact in biomedical applications, offering a versatile material platform for additive manufacturing‐enabled personalized medicine. This work highlights the adaptability of the novel printable bioresin for real‐life applications and its capacity for multiscale structural tailoring, potentially achieving properties comparable to native tissues and extending beyond conventional additive manufacturing techniques.
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