Page 78 - IJB-6-3
P. 78
Commercialization of bioprinting technology
publique-hopitaux-de-marseille-ap-hm-to-prepare-the- 24. Durmus NG, Tekin HC, Guven S, 2015, Magnetic Levitation
first-clinical-trial-of-a-bioprinted-skin. DOI: 10.1016/j. of Single Cells. Proc Natl Acad Sci, 112:3661–8. DOI:
tracli.2009.12.003. 10.1073/pnas.1509250112.
11. Sen CK, Gordillo GM, Roy S, 2017, Human skin wounds: 25. Mirica KA, Ilievski F, Ellerbee AK, et al., 2011, Using
A major and snowballing threat to public health and Magnetic Levitation for Three Dimensional Self-Assembly.
the economy. Wound Repair Regen, 17:763–71. DOI: Adv Mater, 23:4134–40. DOI: 10.1002/adma.201101917.
10.1111/j.1524-475x.2009.00543.x. 26. Subramaniam AB, Yang D, Yu HD, et al., 2014, Noncontact
12. Albanna M, Binder KM, Murphy S, et al., 2019, In Situ Orientation of Objects in Three-dimensional Space Using
Bioprinting of Autologous Skin Cells Accelerates Wound Magnetic Levitation. Proc Natl Acad Sci, 111:12980–85.
Healing of Extensive Excisional Full Thickness Wounds. Sci DOI: 10.1073/pnas.1408705111.
Rep, 9:1856. DOI: 10.1038/s41598-018-38366-w. 27. Guo F, Mao Z, Chen Y, et al., 2016, Three-Dimensional
13. Beckrich K, Aronovitch SA, 1999, Hospital-Acquired Manipulation of Single Cells Using Surface Acoustic
Pressure Ulcers: A Comparison of Costs in Medical vs. Waves. Proc Natl Acad Sci, 113:1522–7. DOI: 10.1073/
Surgical Patients. Nurs Econ, 17:263–71. pnas.1524813113.
14. Miller SF, Bessey P, Lentz CW, et al., 2008, National 28. Guo F, Li P, French JB, et al., 2015, Controlling Cell-Cell
Burn Repository 2007 Report: A Synopsis of the 2007 Interactions Using Surface Acoustic Waves. Proc Natl Acad
Call for Data. J Burn Care Res, 29:862–70. DOI: 10.1097/ Sci, 112:43–8. DOI: 10.1073/pnas.1422068112.
bcr.0b013e31818cb046. 29. Ding X, Li P, Lin SC, et al., 2013, Surface Acoustic Wave
15. Thomas SJ, Kramer GC, Herndon DN, 2003, Burns: Military Microfluidics. Lab Chip, 18:3626–49.
Options and Tactical Solutions. J Trauma, 54:207–18. 30. Li P, Mao Z, Peng Z, et al., 2015, Acoustic Separation of
16. nScrypt and Taking Bioprinting to the Field. Available from: Circulating Tumor Cells. Proc Natl Acad Sci, 112:4970–5.
https://www.3dprintingmedia.network/bioprinting-today- DOI: 10.1073/pnas.1504484112.
series-nscrypt. [Last accessed on 2020 Jul 27]. 31. Sapozhnikov OA, Bailey MR, 2013, Radiation Force of an
17. Balakhovsky Y, Ostrovskiy A, Khesuani Y, 2017, Emerging Arbitrary Acoustic Beam on an Elastic Sphere in a Fluid. J
business models toward commercialization of bioprinting Acoust Soc Am, 133:661–76. DOI: 10.1121/1.4773924.
technology. In: 3D Printing and Biofabrication. Springer, 32. Friend J, Yeo LY, 2011, Microscale Acoustofluidics:
Berlin, pp. 1–22. DOI: 10.1007/978-3-319-40498-1_25-1. Microfluidics Driven via Acoustics and Ultrasonics. Rev Mod
18. Available from: https://www.allevi3d.com/allevi-bioprinting- Phys, 83:647–704. DOI: 10.1103/revmodphys.83.647.
in-space. [Last accessed on 2020 Jul 27]. 33. Zhou Y, 2016, The Application of Ultrasound in 3D Bio-
19. Ito A, Ino K, Hayashida M, 2005, Novel Methodology for Printing. Molecules, 21:590.
Fabrication of Tissue-Engineered Tubular Constructs Using 34. Freed LA, Langer R, Martin I, et al., 1997, Tissue Engineering
Magnetite Nanoparticles and Magnetic Force. Tissue Eng, of Cartilage in Space. Natl Acad Sci USA, 94:13885–90. DOI:
11:1553–61. DOI: 10.1089/ten.2005.11.1553. 10.1073/pnas.94.25.13885.
20. Luciani N, Du V, Gazeau F, et al., 2016, Successful 35. Lamb J, 2016, Scurvy: The Disease of Discovery.
Chondrogenesis within Scaffolds, Using Magnetic Stem Cell 36. Peng W, Unutmaz D, Ozbolat IT, 2016, Bioprinting towards
Confinement and Bioreactor Maturation. Acta Biomater, Physiologically Relevant Tissue Models for Pharmaceutics.
37:101–10. DOI: 10.1016/j.actbio.2016.04.009. Trends Biotechnol, 34:722–32. DOI: 10.1016/j.
21. Whatley BR, Li X, Zhang N, et al., 2014, Magnetic-Directed tibtech.2016.05.013.
Patterning of Cell Spheroids. J Biomed Mater Res A, 37. Ozbolat IT, Peng W, Ozbolat V, 2016, Application Areas
102:1537–47. DOI: 10.1002/jbm.a.34797. of 3D Bioprinting. Drug Discov Today, 21:1257–71. DOI:
22. Mazuel F, Espinosa A, Luciani N, 2016, Massive Intracellular 10.1016/j.drudis.2016.04.006.
Biodegradation of Iron Oxide Nanoparticles Evidenced 38. Peng W, Datta P, Ayan B, et al., 2017, 3D Bioprinting for
Magnetically at Single-Endosome and Tissue Levels. ACS Drug Discovery and Development in Pharmaceutics. Acta
Nano, 8:7627–38. DOI: 10.1021/acsnano.6b02876. Biomater, 57:26–46.
23. Tasoglu S, Yu CH, Liaudanskaya V, et al., 2015, Magnetic 39. Peng W, Datta P, Wu Y, et al., 2018, Challenges in Bio-fabrication
Levitational Assembly for Living Material Fabrication. Adv of Organoid Cultures. Adv Exp Med Biol, 1107:53-71.
Healthc Mater, 4:1469–76. DOI: 10.1002/adhm.201500092. 40. Ozbolat IT, Yin Y, 2013, Bioprinting toward Organ
74 International Journal of Bioprinting (2020)–Volume 6, Issue 3

