Synthesis and in vitro Experiment of Biomaterial Tricalcium Phosphate

Calcium phosphate ceramics consist of materials such as hydroxyapatite, tricalcium phosphate (TCP), calcium phosphate cement (CPC), biphasic calcium phosphate, etc. CPCs have been used for filling bone defects in dentistry and orthopedics. Among these materials, β-tricalcium phosphate is suggested a...

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Main Author: X.V Bui
Format: Article
Language:English
Published: Universitas Gadjah Mada 2016-12-01
Series:ASEAN Journal on Science and Technology for Development
Subjects:
HA
Online Access:http://www.ajstd.org/index.php/ajstd/article/view/32
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spelling doaj-219e2267168d450da9cb39cefa8b32c22020-11-24T22:13:54ZengUniversitas Gadjah MadaASEAN Journal on Science and Technology for Development0217-54602224-90282016-12-01332788410.29037/ajstd.3232Synthesis and in vitro Experiment of Biomaterial Tricalcium PhosphateX.V Bui0Ho Chi Minh City Industry and Trade College, No. 20 Tang Nhon Phu Street, Phuoc Long B Ward, District 9, Ho Chi Minh CityCalcium phosphate ceramics consist of materials such as hydroxyapatite, tricalcium phosphate (TCP), calcium phosphate cement (CPC), biphasic calcium phosphate, etc. CPCs have been used for filling bone defects in dentistry and orthopedics. Among these materials, β-tricalcium phosphate is suggested as an ideal candidate for bone graft in hard tissue engineering due to its high biocompatibility, bioactivity and bone bonding. The preparation, as well as the application of this powder material, has been the important topic of research in material science. In this paper, β-tricalcium phosphate (β-TCP), a component that has chemical formulation similar to bone structure, was synthesized by the precipitate method and then calcinated at 1000oC for 5 h. The physico-chemical properties of synthetic material were examined by XRD, FT-IR and SEM methods. In vitro experience was also carried by soaking β-TCP simulated body fluid powder in a different period of time. Obtained results confirmed the quality of β-TCP synthetic material and its bioactivity.http://www.ajstd.org/index.php/ajstd/article/view/32β-tricalcium phosphatebone mineralsprecipitate methodsimulated body fluidHAphysico-chemical properties
collection DOAJ
language English
format Article
sources DOAJ
author X.V Bui
spellingShingle X.V Bui
Synthesis and in vitro Experiment of Biomaterial Tricalcium Phosphate
ASEAN Journal on Science and Technology for Development
β-tricalcium phosphate
bone minerals
precipitate method
simulated body fluid
HA
physico-chemical properties
author_facet X.V Bui
author_sort X.V Bui
title Synthesis and in vitro Experiment of Biomaterial Tricalcium Phosphate
title_short Synthesis and in vitro Experiment of Biomaterial Tricalcium Phosphate
title_full Synthesis and in vitro Experiment of Biomaterial Tricalcium Phosphate
title_fullStr Synthesis and in vitro Experiment of Biomaterial Tricalcium Phosphate
title_full_unstemmed Synthesis and in vitro Experiment of Biomaterial Tricalcium Phosphate
title_sort synthesis and in vitro experiment of biomaterial tricalcium phosphate
publisher Universitas Gadjah Mada
series ASEAN Journal on Science and Technology for Development
issn 0217-5460
2224-9028
publishDate 2016-12-01
description Calcium phosphate ceramics consist of materials such as hydroxyapatite, tricalcium phosphate (TCP), calcium phosphate cement (CPC), biphasic calcium phosphate, etc. CPCs have been used for filling bone defects in dentistry and orthopedics. Among these materials, β-tricalcium phosphate is suggested as an ideal candidate for bone graft in hard tissue engineering due to its high biocompatibility, bioactivity and bone bonding. The preparation, as well as the application of this powder material, has been the important topic of research in material science. In this paper, β-tricalcium phosphate (β-TCP), a component that has chemical formulation similar to bone structure, was synthesized by the precipitate method and then calcinated at 1000oC for 5 h. The physico-chemical properties of synthetic material were examined by XRD, FT-IR and SEM methods. In vitro experience was also carried by soaking β-TCP simulated body fluid powder in a different period of time. Obtained results confirmed the quality of β-TCP synthetic material and its bioactivity.
topic β-tricalcium phosphate
bone minerals
precipitate method
simulated body fluid
HA
physico-chemical properties
url http://www.ajstd.org/index.php/ajstd/article/view/32
work_keys_str_mv AT xvbui synthesisandinvitroexperimentofbiomaterialtricalciumphosphate
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