Additive manufacturing in the development of 3D skin tissues

作者: Kelsey N. Retting , Deborah G. Nguyen

DOI: 10.1016/B978-0-12-810545-0.00016-4

关键词:

摘要: In the same way that it has transformed production of other solid objects, additive manufacturing power to transform drug discovery and regenerative medicine by enabling creation complex multilayered tissues through an automated platform. The growing number new bioprinted skin models potential better recapitulate native tissue biology with a degree complexity, flexibility, reproducibility not achievable traditional manual fabrication approaches. this review, we provide overview current bioprinting approaches being used today, how they are applied fabricate next generation ex vivo human equivalents for use in toxicology, pharmacological screening, disease modeling, therapeutic applications.

参考文章(62)
Lawrence S Chan, Human skin basement membrane in health and in autoimmune diseases Frontiers in Bioscience. ,vol. 2, pp. d343- 352 ,(1997) , 10.2741/A196
Vivian Lee, Gurtej Singh, John P. Trasatti, Chris Bjornsson, Xiawei Xu, Thanh Nga Tran, Seung-Schik Yoo, Guohao Dai, Pankaj Karande, Design and Fabrication of Human Skin by Three-Dimensional Bioprinting Tissue Engineering Part C-methods. ,vol. 20, pp. 473- 484 ,(2014) , 10.1089/TEN.TEC.2013.0335
Mark W. Carlson, Addy Alt‐Holland, Christophe Egles, Jonathan A. Garlick, Three-Dimensional Tissue Models of Normal and Diseased Skin Current protocols in pharmacology. ,vol. 41, ,(2008) , 10.1002/0471143030.CB1909S41
Carla A. Brohem, Laura B. da Silva Cardeal, Manoela Tiago, María S. Soengas, Silvia B. de Moraes Barros, Silvya S. Maria-Engler, Artificial Skin in Perspective: Concepts and Applications Pigment Cell & Melanoma Research. ,vol. 24, pp. 35- 50 ,(2011) , 10.1111/J.1755-148X.2010.00786.X
Faten A Khorshid, Comparative study of keloid formation in humans and laboratory animals. Medical Science Monitor. ,vol. 11, ,(2005)
Cyrille Norotte, Francois S. Marga, Laura E. Niklason, Gabor Forgacs, Scaffold-free vascular tissue engineering using bioprinting. Biomaterials. ,vol. 30, pp. 5910- 5917 ,(2009) , 10.1016/J.BIOMATERIALS.2009.06.034
Sean V. Murphy, Aleksander Skardal, Anthony Atala, Evaluation of hydrogels for bio-printing applications. Journal of Biomedical Materials Research Part A. ,vol. 101, pp. 272- 284 ,(2013) , 10.1002/JBM.A.34326
Jason A. Barron, David B. Krizman, Bradley R. Ringeisen, Laser printing of single cells: statistical analysis, cell viability, and stress. Annals of Biomedical Engineering. ,vol. 33, pp. 121- 130 ,(2005) , 10.1007/S10439-005-8971-X
Nicola J. Hewitt, Robert J. Edwards, Ellen Fritsche, Carsten Goebel, Pierre Aeby, Julia Scheel, Kerstin Reisinger, Gladys Ouédraogo, Daniel Duche, Joan Eilstein, Alain Latil, Julia Kenny, Claire Moore, Jochen Kuehnl, Joao Barroso, Rolf Fautz, Stefan Pfuhler, Use of Human In Vitro Skin Models for Accurate and Ethical Risk Assessment: Metabolic Considerations Toxicological Sciences. ,vol. 133, pp. 209- 217 ,(2013) , 10.1093/TOXSCI/KFT080
Qiu Li Loh, Cleo Choong, Three-dimensional scaffolds for tissue engineering applications : role of porosity and pore size Tissue Engineering Part B-reviews. ,vol. 19, pp. 485- 502 ,(2013) , 10.1089/TEN.TEB.2012.0437