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BMP-2 incorporated biomimetic CaP coating functionalized 3D printed Ti6Al4V scaffold induces ectopic bone formation in a dog model
- Source :
- Gu, Y, Wei, L, Zhang, Z, Van Dessel, J, Driesen, R B, Lambrichts, I, Jacobs, R, Tian, L, Sun, Y, Liu, Y & Politis, C 2022, ' BMP-2 incorporated biomimetic CaP coating functionalized 3D printed Ti6Al4V scaffold induces ectopic bone formation in a dog model ', Materials and Design, vol. 215, 110443, pp. 1-13 . https://doi.org/10.1016/j.matdes.2022.110443, Materials and Design, 215:110443, 1-13. Elsevier BV, Materials & Design, Vol 215, Iss, Pp 110443-(2022)
- Publication Year :
- 2022
-
Abstract
- The use of Ti6Al4V in bone engineering is limited, due to the biological inertia of the surface. In this study, a porous Ti6Al4V scaffold with mechanical properties similar to cancellous bone was designed and 3D-printed. Under physiological conditions, the scaffold was immersed firstly in a 5-fold-concentrated sim-ulated body fluid, then in a supersaturated CaP solution containing BMP-2, to form a bone-like porous micro/nano structured biomimetic coating on the surface. Scaffolds were implanted in the muscle pouches created in six beagle dogs and were retrieved four weeks later for histologic and histomorpho-metric analysis. Results showed that BMP-2 integrated biomimetic CaP coating induced ectopic bone for- mation, which was absent in other two groups. Soft tissue infiltrated the scaffold’s outside 1 mm layer, while the new-formed bone was evenly distributed in the longitudinal and horizontal directions withinv the rest of the scaffold based on BA/TA, BIC and BA measurements. In conclusion, the BMP-2 incorporated biomimetic CaP coating creates a micro/nano surface structure on the Ti6Al4V scaffold, which helps to increase biocompatibility. The integrated BMP-2 is capable of inducing ectopic bone formation in vivo We acknowledged the contributions of all members of our research group to this article. This research was granted by National Natural Science Foundation of China(NSFC) No. 81670964, and Shandong Taishan Scholar Program to Dr. Yue-lian Liu. The authors appreciate Shanghai Rebone Biomaterials Co. for the supply of BMP-2
- Subjects :
- Technology
POROUS TI-7.5MO ALLOY
Bone substitutes
Science & Technology
SLOW DELIVERY
3D-printing
CALCIUM-PHOSPHATE COATINGS
Mechanical Engineering
Materials Science
Materials Science, Multidisciplinary
Bone morphogenetic protein 2
MECHANICAL-PROPERTIES
ELECTRON-BEAM
IRRADIATION
Calcium phosphate
TITANIUM
Mechanics of Materials
Biomimetics
TA401-492
General Materials Science
DEPROTEINIZED BOVINE BONE
Titanium alloy
OCTACALCIUM-PHOSPHATE
Materials of engineering and construction. Mechanics of materials
CRYSTAL-GROWTH
Subjects
Details
- Language :
- English
- ISSN :
- 02641275
- Database :
- OpenAIRE
- Journal :
- Gu, Y, Wei, L, Zhang, Z, Van Dessel, J, Driesen, R B, Lambrichts, I, Jacobs, R, Tian, L, Sun, Y, Liu, Y & Politis, C 2022, ' BMP-2 incorporated biomimetic CaP coating functionalized 3D printed Ti6Al4V scaffold induces ectopic bone formation in a dog model ', Materials and Design, vol. 215, 110443, pp. 1-13 . https://doi.org/10.1016/j.matdes.2022.110443, Materials and Design, 215:110443, 1-13. Elsevier BV, Materials & Design, Vol 215, Iss, Pp 110443-(2022)
- Accession number :
- edsair.doi.dedup.....380a69da8a651cf666604f2efb7e8c86
- Full Text :
- https://doi.org/10.1016/j.matdes.2022.110443