Araştırma Makalesi

3D Tissue Scaffold Printing On Custom Artificial Bone Applications

Cilt: 18 Sayı: 3 4 Ocak 2015
  • Betül Aldemir
  • Serkan Dikici
  • Şükrü Öztürk
  • Ozan Kahraman
  • Aylin Ürkmez
  • Hakan Oflaz
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3D Tissue Scaffold Printing On Custom Artificial Bone Applications

Öz

Production of defect-matching scaffolds is the most critical step in custom artificial bone applications. Three dimensional printing (3DP) is one of the best techniques particularly for custom designs on artificial bone applications because of the high controllability and design independency. Our long-term aim is to implant an artificial custom bone that is cultured with patient's own mesenchymal stem cells after determining defect architecture on patient's bone by using CT-scan and printing that defect-matching 3D scaffold with appropriate nontoxic materials. In this study, preliminary results of strength and cytotoxicity measurements of 3D printed scaffolds with modified calcium sulfate compositepowder (MCSCP) were presented. CAD designs were created and MCSCP were printed by a 3D printer (3DS, Visijet, PXL Core). Some samples were covered with salt solution in order to harden the samples. MCSCP and salt coated MCSCP were the two experimental groups in this study. Cytotoxicity and mechanical experiments were performed after surface examination withscanning electron microscope (SEM) and light microscope. Tension tests were performed for MCSCP and salt coated MCSCP samples. The 3D scaffolds were sterilized with ethylene oxide gas sterilizer, ventilated and conditioned with DMEM (10% FBS). L929 mouse fibroblast cells were cultured on scaffolds (3 repetitive) and cell viability was determined using MTT analysis. According to the mechanical results, the MCSCP group stands until average 71,305 N, while salt coated MCSCP group stands until 21,328N. Although the strength difference between two groups is statistically significant (p=0.001, Mann-Whitney U), elastic modulus is not (MCSCP=1,186Pa, salt coated MCSCP=1,169Pa, p=0.445). Cell viability (MTT analysis) results on day 1, 3, and 5 demonstrated thatscaffolds hadno toxic effect to the L929 mouse fibroblast cells. Consequently, 3D printed samples with MCSCP could potentially be a strong alternative (biocompatible) for current custom made scaffolds. Desired strength can be acquired with cell inoculation and cultivation of samples in a bioreactor for ossification

Anahtar Kelimeler

Kaynakça

  1. Ahn, S., H., Kim, Y., B., Lee, H., J., Kim, G., H., 2012. A New Hybrid Scaffold Constructed of Solid Freeform- Fabricated PCL Struts and Collagen Struts for Bone Tissue
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  5. Comprehensive Bandi, V., Dufva , M., Farny, S., 2013. Additive Manufacturing–Printing The Future. Bit Bang 5: Changing Global Landscapes – Role of Policy Making and Innovation Capability, 116-143.
  6. Becker, S. T., Bolte, H., Schu¨nemann, K., Seitz, H., Bara,J., J., Beck-Broichsitter, B., E., Russo, P., A., J., Wiltfang, J., Warnke, P., H., 2012. Endocultivation: The Influence of Delayed vs. Simultaneous Application Of BMP-2 onto individually Formed Hydroxyapatite Matrices for Heterotopic Bone induction, Int. J. Oral Maxillofac. Surg., 41, 1153– 1160.
  7. Bose, S., Roy, M., Bandyopadhyay, A., 2012. Recent Advances in The Bone Tissue Engineering Scaffolds. Trends in Biology, 30(10).
  8. Bose, S., Tarafder, S., Banerjee, S., S., Davies, N., M., Bandyopadhyay, A., 2011. Understanding In Vivo Response and Mechanical Property Variation in Mgo, Sro And SiO2 Doped B-TCP, Bone, 48(6); 1282- 1290.

Ayrıntılar

Birincil Dil

İngilizce

Konular

Mühendislik

Bölüm

Araştırma Makalesi

Yazarlar

Betül Aldemir Bu kişi benim

Şükrü Öztürk Bu kişi benim

Ozan Kahraman Bu kişi benim

Aylin Ürkmez Bu kişi benim

Hakan Oflaz Bu kişi benim

Yayımlanma Tarihi

4 Ocak 2015

Gönderilme Tarihi

30 Aralık 2014

Kabul Tarihi

-

Yayımlandığı Sayı

Yıl 2014 Cilt: 18 Sayı: 3

Kaynak Göster

APA
Aldemir, B., Dikici, S., Öztürk, Ş., Kahraman, O., Ürkmez, A., & Oflaz, H. (2015). 3D Tissue Scaffold Printing On Custom Artificial Bone Applications. Süleyman Demirel Üniversitesi Fen Bilimleri Enstitüsü Dergisi, 18(3), 1-9. https://izlik.org/JA25MJ44ZX
AMA
1.Aldemir B, Dikici S, Öztürk Ş, Kahraman O, Ürkmez A, Oflaz H. 3D Tissue Scaffold Printing On Custom Artificial Bone Applications. Süleyman Demirel Üniv. Fen Bilim. Enst. Derg. 2015;18(3):1-9. https://izlik.org/JA25MJ44ZX
Chicago
Aldemir, Betül, Serkan Dikici, Şükrü Öztürk, Ozan Kahraman, Aylin Ürkmez, ve Hakan Oflaz. 2015. “3D Tissue Scaffold Printing On Custom Artificial Bone Applications”. Süleyman Demirel Üniversitesi Fen Bilimleri Enstitüsü Dergisi 18 (3): 1-9. https://izlik.org/JA25MJ44ZX.
EndNote
Aldemir B, Dikici S, Öztürk Ş, Kahraman O, Ürkmez A, Oflaz H (01 Ocak 2015) 3D Tissue Scaffold Printing On Custom Artificial Bone Applications. Süleyman Demirel Üniversitesi Fen Bilimleri Enstitüsü Dergisi 18 3 1–9.
IEEE
[1]B. Aldemir, S. Dikici, Ş. Öztürk, O. Kahraman, A. Ürkmez, ve H. Oflaz, “3D Tissue Scaffold Printing On Custom Artificial Bone Applications”, Süleyman Demirel Üniv. Fen Bilim. Enst. Derg., c. 18, sy 3, ss. 1–9, Oca. 2015, [çevrimiçi]. Erişim adresi: https://izlik.org/JA25MJ44ZX
ISNAD
Aldemir, Betül - Dikici, Serkan - Öztürk, Şükrü - Kahraman, Ozan - Ürkmez, Aylin - Oflaz, Hakan. “3D Tissue Scaffold Printing On Custom Artificial Bone Applications”. Süleyman Demirel Üniversitesi Fen Bilimleri Enstitüsü Dergisi 18/3 (01 Ocak 2015): 1-9. https://izlik.org/JA25MJ44ZX.
JAMA
1.Aldemir B, Dikici S, Öztürk Ş, Kahraman O, Ürkmez A, Oflaz H. 3D Tissue Scaffold Printing On Custom Artificial Bone Applications. Süleyman Demirel Üniv. Fen Bilim. Enst. Derg. 2015;18:1–9.
MLA
Aldemir, Betül, vd. “3D Tissue Scaffold Printing On Custom Artificial Bone Applications”. Süleyman Demirel Üniversitesi Fen Bilimleri Enstitüsü Dergisi, c. 18, sy 3, Ocak 2015, ss. 1-9, https://izlik.org/JA25MJ44ZX.
Vancouver
1.Betül Aldemir, Serkan Dikici, Şükrü Öztürk, Ozan Kahraman, Aylin Ürkmez, Hakan Oflaz. 3D Tissue Scaffold Printing On Custom Artificial Bone Applications. Süleyman Demirel Üniv. Fen Bilim. Enst. Derg. [Internet]. 01 Ocak 2015;18(3):1-9. Erişim adresi: https://izlik.org/JA25MJ44ZX

e-ISSN :1308-6529
Linking ISSN (ISSN-L): 1300-7688

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