Yıl: 2017 Cilt: 5 Sayı: 2 Sayfa Aralığı: 548 - 564 Metin Dili: Türkçe İndeks Tarihi: 29-07-2022

Current 3 Dimensional Printing Technologies Used in Scaffold Design in Tissue Engineering

Öz:
Bu çalışmada günümüzde kullanılan 3 boyutlu yazdırma teknolojileri incelenmiş ve biyoyazdırma için kullanılan yazdırma teknolojileri arasında en uygun doku iskelesi inşa edenler tanımlanmıştır. Araştırma kapsamında üretilmesi hedeflenen doku yapısına göre kullanılacak olan biyomalzemelere uygun 3 boyutlu yazıcıların özellikleri, 3 boyutlu yazıcıların doku mühendisliği için gerekli olan gözeneklilik, yapısal dayanım, pürüzsüzlük, biyoçözünürlük kalitesini sağlama koşullarına yer verilmiştir. Bu araştırmada özetlenmiş olan bulgular, Doku İskelesi Tasarımı ve 3 Boyutlu Yazdırma Teknolojileri gibi biyoyazdırma uygulamaları ile ilgilenen akademik ve sanayi çevre için yararlı olacaktır
Anahtar Kelime:

Doku Mühendisliğinde Doku İskelesi Tasarımında Kullanılan Güncel 3 Boyutlu Yazdırma Teknolojileri

Öz:
In this study, current 3 dimensional printing technologies have been critically reviewed and most suitable printer technologies for tissue scaffold building used in bioprinting has been identified. The specifications of 3 dimensional printers appropriate for biomaterials used in building artificial tissue structures include the bioplotter's ability to provide porosity, structural strength, smoothness and biodegradability conditions required for tissue engineering. The findings outlined in this paper can be useful to both academic and industry followers interested in bioprinting applications such as Scaffold Design and manufacturing by 3 Dimensional Printer Technologies
Anahtar Kelime:

Belge Türü: Makale Makale Türü: Araştırma Makalesi Erişim Türü: Erişime Açık
  • [1] Bajaj, P., et al., 3D Biofabrication Strategies for Tissue Engineering and Regenerative Medicine. Annual Review of Biomedical Engineering, 2014. 16(1): p. 247-276.
  • [2] Xiaohong, W., et al., 3D Bioprinting Technologies for Hard Tissue and Organ Engineering. Materials (1996-1944), 2016. 9(10): p. 1-23.
  • [3] Melchels, F.P.W., et al., Additive manufacturing of tissues and organs. Progress in Polymer Science, 2012. 37(8): p. 1079-1104.
  • [4] O'Brien, F.J., Biomaterials and scaffolds for tissue engineering. Materials Today, 2011. 14(3): p. 88-95.
  • [5] Hutmacher, D.W., Scaffolds in tissue engineering bone and cartilage. Biomaterials, 2000. 21(24): p. 2529-2543.
  • [6] Leckart, S. How 3-D Printing Body Parts Will Revolutionize Medicine. Popular Science, 2013.
  • [7] Chen, A.A., et al., 3-D Fabrication Technology for Tissue Engineering. BioMEMS and Biomedical Nanotechnology, 2007: p. 23-38.
  • [8] Gu, B.K., et al., 3-dimensional bioprinting for tissue engineering applications. Biomater Res, 2016. 20: p. 12.
  • [9] Abdelaal, O.A. and S.M. Darwish, Fabrication of Tissue Engineering Scaffolds Using Rapid Prototyping Techniques. International Journal of Mechanical, Aerospace, Industrial, Mechatronic and Manufacturing Engineering, 2011: p. 2317-2325.
  • [10] Sun, W., et al., Computer Aided Tissue Engineering: Overview, Scope and Challenges. Biotechnology Applied Biochemistry, 2004: p. 29-47. [11] Sing, S.L., et al., Laser and electron-beam powder-bed additive manufacturing of metallic implants: A review on processes, materials and designs. Journal of Orthopaedic Research, 2016. 34(3): p. 369 - 38
  • [12] Murphy, S.V. and A. Atala, 3D bioprinting of tissues and organs. Nat Biotechnol, 2014. 32(8): p. 773-85.
  • [13] Tasoglu, S. and U. Demirci, Bioprinting for stem cell research. Trends Biotechnol, 2013. 31(1): p. 10-9.
  • [14] Kim, J.D., et al., Piezoelectric inkjet printing of polymers: Stem cell patterning on polymer substrates. Polymer, 2010. 51(10): p. 2147-2154.
  • [15] Fang, Y., et al., Rapid generation of multiplexed cell cocultures using acoustic droplet ejection followed by aqueous two-phase exclusion patterning. Tissue Eng Part C Methods, 2012. 18(9): p. 647- 57.
  • [16] Miranda, P., et al. Sintering and robocasting of beta-tricalcium phosphate scaffolds for orthopaedic applications. 2005 [cited 2016 October]; Available from: http://escholarship.org/uc/item/7b08w22z.
  • [17] Selimis, A. and M. Farsari, Laser-Based 3D Printing and Surface Texturing. 2016: p. 111-136.
APA SEZER H, ÇOTUR B (2017). Current 3 Dimensional Printing Technologies Used in Scaffold Design in Tissue Engineering. , 548 - 564.
Chicago SEZER H.Kürşad b,ÇOTUR Beka Current 3 Dimensional Printing Technologies Used in Scaffold Design in Tissue Engineering. (2017): 548 - 564.
MLA SEZER H.Kürşad b,ÇOTUR Beka Current 3 Dimensional Printing Technologies Used in Scaffold Design in Tissue Engineering. , 2017, ss.548 - 564.
AMA SEZER H,ÇOTUR B Current 3 Dimensional Printing Technologies Used in Scaffold Design in Tissue Engineering. . 2017; 548 - 564.
Vancouver SEZER H,ÇOTUR B Current 3 Dimensional Printing Technologies Used in Scaffold Design in Tissue Engineering. . 2017; 548 - 564.
IEEE SEZER H,ÇOTUR B "Current 3 Dimensional Printing Technologies Used in Scaffold Design in Tissue Engineering." , ss.548 - 564, 2017.
ISNAD SEZER, H.Kürşad b - ÇOTUR, Beka. "Current 3 Dimensional Printing Technologies Used in Scaffold Design in Tissue Engineering". (2017), 548-564.
APA SEZER H, ÇOTUR B (2017). Current 3 Dimensional Printing Technologies Used in Scaffold Design in Tissue Engineering. Düzce Üniversitesi Bilim ve Teknoloji Dergisi, 5(2), 548 - 564.
Chicago SEZER H.Kürşad b,ÇOTUR Beka Current 3 Dimensional Printing Technologies Used in Scaffold Design in Tissue Engineering. Düzce Üniversitesi Bilim ve Teknoloji Dergisi 5, no.2 (2017): 548 - 564.
MLA SEZER H.Kürşad b,ÇOTUR Beka Current 3 Dimensional Printing Technologies Used in Scaffold Design in Tissue Engineering. Düzce Üniversitesi Bilim ve Teknoloji Dergisi, vol.5, no.2, 2017, ss.548 - 564.
AMA SEZER H,ÇOTUR B Current 3 Dimensional Printing Technologies Used in Scaffold Design in Tissue Engineering. Düzce Üniversitesi Bilim ve Teknoloji Dergisi. 2017; 5(2): 548 - 564.
Vancouver SEZER H,ÇOTUR B Current 3 Dimensional Printing Technologies Used in Scaffold Design in Tissue Engineering. Düzce Üniversitesi Bilim ve Teknoloji Dergisi. 2017; 5(2): 548 - 564.
IEEE SEZER H,ÇOTUR B "Current 3 Dimensional Printing Technologies Used in Scaffold Design in Tissue Engineering." Düzce Üniversitesi Bilim ve Teknoloji Dergisi, 5, ss.548 - 564, 2017.
ISNAD SEZER, H.Kürşad b - ÇOTUR, Beka. "Current 3 Dimensional Printing Technologies Used in Scaffold Design in Tissue Engineering". Düzce Üniversitesi Bilim ve Teknoloji Dergisi 5/2 (2017), 548-564.