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Bioprinting Toward Organ Fabrication: Challenges and Future Trends

IEEE Transactions on Biomedical Engineering · 2013 · Vol. 60(3) · pp. 691–699
İbrahim T. ÖzbolatYin Yu

Abstract

Tissue engineering has been a promising field of research, offering hope for bridging the gap between organ shortage and transplantation needs. However, building three-dimensional (3-D) vascularized organs remains the main technological barrier to be overcome. Organ printing, which is defined as computer-aided additive biofabrication of 3-D cellular tissue constructs, has shed light on advancing this field into a new era. Organ printing takes advantage of rapid prototyping (RP) technology to print cells, biomaterials, and cell-laden biomaterials individually or in tandem, layer by layer, directly creating 3-D tissue-like structures. Here, we overview RP-based bioprinting approaches and discuss the current challenges and trends toward fabricating living organs for transplant in the near future.

3D Printing in Biomedical ResearchAdditive Manufacturing and 3D Printing TechnologiesPluripotent Stem Cells ResearchBiofabricationEconomic shortageTissue engineering3D bioprintingRapid prototypingComputer scienceTransplantationNanotechnologyCell encapsulationEngineering

MeSH terms

AnimalsCattleHumansOrgan Culture TechniquesTissue EngineeringBioprinting
Citations
653
FWCI
28.49
field-weighted impact
References
70
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100%
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Citations per year
References
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Advanced Drug Delivery Reviews · 2012 · 3,186 citations
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