Embedded direct ink writing of 4D printed tracheal scaffold for airway tissue engineering

材料科学 脚手架 复合数 聚乳酸 生物相容性 生物医学工程 组织工程 3D打印 聚二甲基硅氧烷 3d打印 聚合物 复合材料 粘附 制作 成纤维细胞 抗压强度 纳米技术 压缩(物理) 组织粘连 挤压 硅酮 可生物降解聚合物 熔融沉积模型 管腔(解剖学) 形状记忆聚合物
作者
Shubham Shankar Mohol,Doyel Ghosal,Pragya Pandey,Sachin Kumar
出处
期刊:Rapid Prototyping Journal [Emerald (MCB UP)]
卷期号:: 1-15
标识
DOI:10.1108/rpj-05-2025-0167
摘要

Purpose This study aims to fabricate a polylactic acid (PLA)/polypropylene carbonate (PPC) composite tracheal scaffold using embedded 3D printing and demonstrate its triple-shape memory functionality. Design/methodology/approach Three tracheal scaffolds of different geometry (cylinder, bellow and spiral-shaped) were investigated using mechanical (radial and longitudinal compression tests) and compared with that of the native goat trachea. As a case study, the bellow-shaped scaffold was implanted inside the lumen of the native goat trachea and the triple-shape memory behavior was demonstrated. To further assess the biocompatibility of the samples, MTT, live/dead and cell adhesion assays were conducted using fibroblast cells. Findings The thermal characterization revealed that the effect of Laponite nano-silicate on the PLA/PPC composite surface had negligible effect on the thermal transitions and shape-memory ratios. Comparative studies between the three scaffolds highlighted that the bellow-shaped scaffold was found to closely mimic the mechanical properties (radial and longitudinal compression) of the native goat trachea. The PLA/PPC composite samples fabricated using embedded 3D printing were found to have a shape-fixity ratio of 96.07 ± 3.06% and a shape-recovery ratio of 95.88 ± 2.61%. The in vitro cytotoxicity of the PLA/PPC composite demonstrated excellent biocompatibility. Originality/value The proposed methodology of embedded 3D printing allows for fabrication of complex geometry structures using a wide variety of polymers by leveraging the solvent–water interaction capability.

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