
pmid: 27492211
New advanced manufacturing technologies under the alias of additive biomanufacturing allow the design and fabrication of a range of products from pre-operative models, cutting guides and medical devices to scaffolds. The process of printing in 3 dimensions of cells, extracellular matrix (ECM) and biomaterials (bioinks, powders, etc.) to generate in vitro and/or in vivo tissue analogue structures has been termed bioprinting. To further advance in additive biomanufacturing, there are many aspects that we can learn from the wider additive manufacturing (AM) industry, which have progressed tremendously since its introduction into the manufacturing sector. First, this review gives an overview of additive manufacturing and both industry and academia efforts in addressing specific challenges in the AM technologies to drive toward AM-enabled industrial revolution. After which, considerations of poly(lactides) as a biomaterial in additive biomanufacturing are discussed. Challenges in wider additive biomanufacturing field are discussed in terms of (a) biomaterials; (b) computer-aided design, engineering and manufacturing; (c) AM and additive biomanufacturing printers hardware; and (d) system integration. Finally, the outlook for additive biomanufacturing was discussed.
Manufactured Materials, Poly(Lactic acids), Polyesters, Bioprinting, computer-aided manufacturing, 610, Biocompatible Materials, 3D printing, computer-aided design, computer-aided engineering, additive biomanufacturing, polyactides, 620, bio printing, Computer-Aided Design, tissue engineering and regenerative medicine
Manufactured Materials, Poly(Lactic acids), Polyesters, Bioprinting, computer-aided manufacturing, 610, Biocompatible Materials, 3D printing, computer-aided design, computer-aided engineering, additive biomanufacturing, polyactides, 620, bio printing, Computer-Aided Design, tissue engineering and regenerative medicine
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