Designing Biomaterials for 3D Printing

被引:573
作者
Guvendiren, Murat [1 ]
Molde, Joseph [1 ]
Soares, Rosane M. D. [2 ]
Kohn, Joachim [1 ]
机构
[1] Rutgers State Univ, New Jersey Ctr Biomat, 145 Bevier Rd, Piscataway, NJ 08854 USA
[2] Univ Fed Rio Grande do Sul, Inst Chem, Lab Biomat Polimer Poli Bio, Ave Bento Goncaves 9500, BR-91501970 Porto Alegre, RS, Brazil
关键词
rapid prototyping; additive manufacturing; polymers; hydrogel; ceramic; tissue engineering; TRICALCIUM PHOSPHATE SCAFFOLDS; INDUCED POLYMER DEGRADATION; BIOACTIVE GLASS SCAFFOLDS; PHOTO-CROSS-LINKING; FUSED DEPOSITION; CELL-LADEN; MECHANICAL-PROPERTIES; FREEFORM FABRICATION; IN-VITRO; HYDROXYAPATITE SCAFFOLDS;
D O I
10.1021/acsbiomaterials.6b00121
中图分类号
TB3 [工程材料学]; R318.08 [生物材料学];
学科分类号
082905 [生物质能源与材料]; 100103 [病原生物学];
摘要
Three-dimensional (3D) printing is becoming an increasingly common technique to fabricate scaffolds and devices for tissue engineering applications. This is due to the potential of 3D printing to provide patient-specific designs, high structural complexity, rapid on-demand fabrication at a low-cost. One of the major bottlenecks that limits the widespread acceptance of 3D printing in biomanufacturing is the lack of diversity in "biomaterial inks". Printability of a biomaterial is determined by the printing technique. Although a wide range of biomaterial inks including polymers, ceramics, hydrogels and composites have been developed, the field is still struggling with processing of these materials into self-supporting devices with tunable mechanics, degradation, and bioactivity. This review aims to highlight the past and recent advances in biomaterial ink development and design considerations moving forward. A brief overview of 3D printing technologies focusing on ink design parameters is also included.
引用
收藏
页码:1679 / 1693
页数:15
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