Materials from titanium - Cobalt alloys for hybrid implants
A E Sytschev
1
,
S. G. Vadchenko
1
,
O K Kamynina
1
,
E N Balikhina
1
,
I G Plashchina
2
,
E.A. Krylova
2
,
A S Grigoryan
3
,
A K Toporkova
3
,
A. N. Konovalov
4
,
3
Central Research Institute of Stomatology and Oral Surgery, Russian Medical Technologies, Moscow, Russia
|
Publication type: Journal Article
Publication date: 2009-01-01
scimago Q3
wos Q4
SJR: 0.277
CiteScore: 1.5
Impact factor: 0.6
ISSN: 00074888, 15738221, 03659615, 24131008
PubMed ID:
19526152
General Biochemistry, Genetics and Molecular Biology
General Medicine
Abstract
We proposed a new method to increase the biocompatibility of porous materials that were synthesized from titanium and cobalt allows by the method of self-propagating high-temperature synthesis. This method suggested the introduction of calcium hydroxyapatite into the reaction mixture. Administration of calcium hydroxyapatite into the reaction mixture had a modifying effect on the structure and surface of the pore space and biocompatibility of composite materials. Administration of calcium hydroxyapatite crystals was followed by a significant decrease in the size of pores and appearance of water-soluble fractions, which inhibited the activity of cells. However, treatment with amorphous nanodispersed calcium hydroxyapatite increased the biocompatibility and adhesiveness of materials for mesenchymal stem cells. The pore space and mechanical characteristics of materials obtained with amorphous nanodispersed calcium hydroxyapatite were similar to the properties of natural bone. Moreover, these materials surpassed titanium—cobalt allows in biocompatibility. Our results indicate that the introduction of amorphous nanodispersed calcium hydroxyapatite into the reaction mixture during self-propagating high-temperature synthesis has a modifying effect on the pore space of composite materials and increases their biocompatibility and adhesiveness for cells. We conclude that these materials may be used as a carrier of stem cells and progenitor cells in hybrid implants.
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Sytschev A. E. et al. Materials from titanium - Cobalt alloys for hybrid implants // Bulletin of Experimental Biology and Medicine. 2009. Vol. 147. No. 1. pp. 160-165.
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Sytschev A. E., Vadchenko S. G., Kamynina O. K., Balikhina E. N., Plashchina I. G., Krylova E., Grigoryan A. S., Toporkova A. K., Konovalov A. N., Selezneva I. I. Materials from titanium - Cobalt alloys for hybrid implants // Bulletin of Experimental Biology and Medicine. 2009. Vol. 147. No. 1. pp. 160-165.
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RIS
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TY - JOUR
DO - 10.1007/s10517-009-0428-z
UR - http://link.springer.com/10.1007/s10517-009-0428-z
TI - Materials from titanium - Cobalt alloys for hybrid implants
T2 - Bulletin of Experimental Biology and Medicine
AU - Sytschev, A E
AU - Vadchenko, S. G.
AU - Kamynina, O K
AU - Balikhina, E N
AU - Plashchina, I G
AU - Krylova, E.A.
AU - Grigoryan, A S
AU - Toporkova, A K
AU - Konovalov, A. N.
AU - Selezneva, I I
PY - 2009
DA - 2009/01/01
PB - Springer Nature
SP - 160-165
IS - 1
VL - 147
PMID - 19526152
SN - 0007-4888
SN - 1573-8221
SN - 0365-9615
SN - 2413-1008
ER -
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BibTex (up to 50 authors)
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@article{2009_Sytschev,
author = {A E Sytschev and S. G. Vadchenko and O K Kamynina and E N Balikhina and I G Plashchina and E.A. Krylova and A S Grigoryan and A K Toporkova and A. N. Konovalov and I I Selezneva},
title = {Materials from titanium - Cobalt alloys for hybrid implants},
journal = {Bulletin of Experimental Biology and Medicine},
year = {2009},
volume = {147},
publisher = {Springer Nature},
month = {jan},
url = {http://link.springer.com/10.1007/s10517-009-0428-z},
number = {1},
pages = {160--165},
doi = {10.1007/s10517-009-0428-z}
}
Cite this
MLA
Copy
Sytschev, A. E., et al. “Materials from titanium - Cobalt alloys for hybrid implants.” Bulletin of Experimental Biology and Medicine, vol. 147, no. 1, Jan. 2009, pp. 160-165. http://link.springer.com/10.1007/s10517-009-0428-z.