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Materiale Plastice
Cite as: Mater. Plast.
https://doi.org/10.37358/Mat.Plast.1964

OSIM Nr. R102356
ISSN Print 0025-5289
ISSN Online 2668-8220
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Materiale Plastice (Mater. Plast.), Year 2017, Volume 54, Issue 4, 659-665

https://doi.org/10.37358/MP.17.4.4921

Bianca Galateanu, Ionut Cristian Radu, Eugenia Vasile, Ariana Hudita, Mirela Violeta Serban, Marieta Costache, Horia Iovu, Catalin Zaharia

Fabrication of Novel Silk Fibroin - LDHs Composite Arhitectures for Potential Bone Tissue Engineering


Abstract:
Nanocomposite materials have attracted a high interest for biomedical applications because their special properties related with structure and composition. In this paper we synthesized novel hydrogel nanocomposite materials special designed for hard tissue engineering. The nanocomposite materials are able to promote hydroxyapatite formation by alternating soaking mineralization demanded for increasing of cells biocompatibility and adhesion.


Keywords:
nanocomposite; hydroxyapatite; hydrogel; silk; tissue engineering

Issue: 2017 Volume 54, Issue 4
Pages: 659-665
Publication date: 2017/12/30
https://doi.org/10.37358/MP.17.4.4921
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Creative Commons License
This article is published under the Creative Commons Attribution 4.0 International License
Citation Styles
Cite this article as:
GALATEANU, B., RADU, I.C., VASILE, E., HUDITA, A., SERBAN, M.V., COSTACHE, M., IOVU, H., ZAHARIA, C., Fabrication of Novel Silk Fibroin - LDHs Composite Arhitectures for Potential Bone Tissue Engineering, Mater. Plast., 54(4), 2017, 659-665.

Vancouver
Galateanu B, Radu IC, Vasile E, Hudita A, Serban MV, Costache M, Iovu H, Zaharia C. Fabrication of Novel Silk Fibroin - LDHs Composite Arhitectures for Potential Bone Tissue Engineering. Mater. Plast.[internet]. 2017 Dec;54(4):659-665. Available from: https://doi.org/10.37358/MP.17.4.4921


APA 6th edition
Galateanu, B., Radu, I.C., Vasile, E., Hudita, A., Serban, M.V., Costache, M., Iovu, H. & Zaharia, C. (2017). Fabrication of Novel Silk Fibroin - LDHs Composite Arhitectures for Potential Bone Tissue Engineering. Materiale Plastice, 54(4), 659-665. https://doi.org/10.37358/MP.17.4.4921


Harvard
Galateanu, B., Radu, I.C., Vasile, E., Hudita, A., Serban, M.V., Costache, M., Iovu, H., Zaharia, C. (2017). 'Fabrication of Novel Silk Fibroin - LDHs Composite Arhitectures for Potential Bone Tissue Engineering', Materiale Plastice, 54(4), pp. 659-665. https://doi.org/10.37358/MP.17.4.4921


IEEE
B. Galateanu, I.C. Radu, E. Vasile, A. Hudita, M.V. Serban, M. Costache, H. Iovu, C. Zaharia, "Fabrication of Novel Silk Fibroin - LDHs Composite Arhitectures for Potential Bone Tissue Engineering". Materiale Plastice, vol. 54, no. 4, pp. 659-665, 2017. [online]. https://doi.org/10.37358/MP.17.4.4921


Text
Bianca Galateanu, Ionut Cristian Radu, Eugenia Vasile, Ariana Hudita, Mirela Violeta Serban, Marieta Costache, Horia Iovu, Catalin Zaharia,
Fabrication of Novel Silk Fibroin - LDHs Composite Arhitectures for Potential Bone Tissue Engineering,
Materiale Plastice,
Volume 54, Issue 4,
2017,
Pages 659-665,
ISSN 2668-8220,
https://doi.org/10.37358/MP.17.4.4921.
(https://revmaterialeplastice.ro/Articlegs.asp?ID=4921)
Keywords: nanocomposite; hydroxyapatite; hydrogel; silk; tissue engineering


RIS
TY - JOUR
T1 - Fabrication of Novel Silk Fibroin - LDHs Composite Arhitectures for Potential Bone Tissue Engineering
A1 - Galateanu, Bianca
A2 - Radu, Ionut Cristian
A3 - Vasile, Eugenia
A4 - Hudita, Ariana
A5 - Serban, Mirela Violeta
A6 - Costache, Marieta
A7 - Iovu, Horia
A8 - Zaharia, Catalin
JF - Materiale Plastice
JO - Mater. Plast.
PB - Materiale Plastice SRL
SN - 2668-8220
Y1 - 2017
VL - 54
IS - 4
SP - 659
EP - 665
UR - https://doi.org/10.37358/MP.17.4.4921
KW - nanocomposite
KW - hydroxyapatite
KW - hydrogel
KW - silk
KW - tissue engineering
ER -


BibTex
@article{MatPlast2017P659,
author = {Galateanu Bianca and Radu Ionut Cristian and Vasile Eugenia and Hudita Ariana and Serban Mirela Violeta and Costache Marieta and Iovu Horia and Zaharia Catalin},
title = {Fabrication of Novel Silk Fibroin - LDHs Composite Arhitectures for Potential Bone Tissue Engineering},
journal = {Materiale Plastice},
volume = {54},
number = {4},
pages = {659-665},
year = {2017},
issn = {2668-8220},
doi = {https://doi.org/10.37358/MP.17.4.4921},
url = {https://revmaterialeplastice.ro/Articlegs.asp?ID=4921}
}
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