3D Plotting of Calcium Phosphate Cement and Melt Electrowriting of Polycaprolactone Microfibers in One Scaffold: A Hybrid Additive Manufacturing Process

被引:12
作者
Kilian, David [1 ,2 ]
von Witzleben, Max [1 ,2 ]
Lanaro, Matthew [3 ,4 ]
Wong, Cynthia S. [3 ,4 ]
Vater, Corina [1 ,2 ]
Lode, Anja [1 ,2 ]
Allenby, Mark C. [3 ,4 ]
Woodruff, Maria A. [3 ,4 ]
Gelinsky, Michael [1 ,2 ]
机构
[1] Tech Univ Dresden TUD, Fac Med, Ctr Translat Bone Joint & Soft Tissue Res, D-01307 Dresden, Germany
[2] Tech Univ Dresden TUD, Univ Hosp Carl Gustav Carus, D-01307 Dresden, Germany
[3] Queensland Univ Technol QUT, Sci & Engn Fac, Brisbane, Qld 4000, Australia
[4] Queensland Univ Technol QUT, Inst Hlth & Biomed Innovat, Brisbane, Qld 4059, Australia
关键词
biomaterials; melt electrowriting; 3D printing; bone cement; polycaprolactone; multi-material scaffolds; BONE; DESIGN; DEGRADATION; HYDROGELS; TIME; PCL;
D O I
10.3390/jfb13020075
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
The fabrication of patient-specific scaffolds for bone substitutes is possible through extrusion-based 3D printing of calcium phosphate cements (CPC) which allows the generation of structures with a high degree of customization and interconnected porosity. Given the brittleness of this clinically approved material, the stability of open-porous scaffolds cannot always be secured. Herein, a multi-technological approach allowed the simultaneous combination of CPC printing with melt electrowriting (MEW) of polycaprolactone (PCL) microfibers in an alternating, tunable design in one automated fabrication process. The hybrid CPC+PCL scaffolds with varying CPC strand distance (800-2000 mu m) and integrated PCL fibers featured a strong CPC to PCL interface. While no adverse effect on mechanical stiffness was detected by the PCL-supported scaffold design; the microfiber integration led to an improved integrity. The pore distance between CPC strands was gradually increased to identify at which critical CPC porosity the microfibers would have a significant impact on pore bridging behavior and growth of seeded cells. At a CPC strand distance of 1600 mu m, after 2 weeks of cultivation, the incorporation of PCL fibers led to pore coverage by a human mesenchymal stem cell line and an elevated proliferation level of murine pre-osteoblasts. The integrated fabrication approach allows versatile design adjustments on different levels.
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页数:24
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