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Preparation, Physical-Chemical Characterization, and Cytocompatibility of Polymeric Calcium Phosphate Cements

Aim. Physicochemical mechanical and in vitro biological properties of novel formulations of polymeric calcium phosphate cements (CPCs) were investigated. Methods. Monocalcium phosphate, calcium oxide, and synthetic hydroxyapatite were combined with either modified polyacrylic acid, light activated p...

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Autores principales: Khashaba, Rania M., Moussa, Mervet, Koch, Christopher, Jurgensen, Arthur R., Missimer, David M., Rutherford, Ronny L., Chutkan, Norman B., Borke, James L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi Publishing Corporation 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3176494/
https://www.ncbi.nlm.nih.gov/pubmed/21941551
http://dx.doi.org/10.1155/2011/467641
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author Khashaba, Rania M.
Moussa, Mervet
Koch, Christopher
Jurgensen, Arthur R.
Missimer, David M.
Rutherford, Ronny L.
Chutkan, Norman B.
Borke, James L.
author_facet Khashaba, Rania M.
Moussa, Mervet
Koch, Christopher
Jurgensen, Arthur R.
Missimer, David M.
Rutherford, Ronny L.
Chutkan, Norman B.
Borke, James L.
author_sort Khashaba, Rania M.
collection PubMed
description Aim. Physicochemical mechanical and in vitro biological properties of novel formulations of polymeric calcium phosphate cements (CPCs) were investigated. Methods. Monocalcium phosphate, calcium oxide, and synthetic hydroxyapatite were combined with either modified polyacrylic acid, light activated polyalkenoic acid, or polymethyl vinyl ether maleic acid to obtain Types I, II, and III CPCs. Setting time, compressive and diametral strength of CPCs was compared with zinc polycarboxylate cement (control). Specimens were characterized using X-ray diffraction, scanning electron microscopy, and infrared spectroscopy. In vitro cytotoxicity of CPCs and control was assessed. Results. X-ray diffraction analysis showed hydroxyapatite, monetite, and brushite. Acid-base reaction was confirmed by the appearance of stretching peaks in IR spectra of set cements. SEM revealed rod-like crystals and platy crystals. Setting time of cements was 5–12 min. Type III showed significantly higher strength values compared to control. Type III yielded high biocompatibility. Conclusions. Type III CPCs show promise for dental applications.
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spelling pubmed-31764942011-09-22 Preparation, Physical-Chemical Characterization, and Cytocompatibility of Polymeric Calcium Phosphate Cements Khashaba, Rania M. Moussa, Mervet Koch, Christopher Jurgensen, Arthur R. Missimer, David M. Rutherford, Ronny L. Chutkan, Norman B. Borke, James L. Int J Biomater Research Article Aim. Physicochemical mechanical and in vitro biological properties of novel formulations of polymeric calcium phosphate cements (CPCs) were investigated. Methods. Monocalcium phosphate, calcium oxide, and synthetic hydroxyapatite were combined with either modified polyacrylic acid, light activated polyalkenoic acid, or polymethyl vinyl ether maleic acid to obtain Types I, II, and III CPCs. Setting time, compressive and diametral strength of CPCs was compared with zinc polycarboxylate cement (control). Specimens were characterized using X-ray diffraction, scanning electron microscopy, and infrared spectroscopy. In vitro cytotoxicity of CPCs and control was assessed. Results. X-ray diffraction analysis showed hydroxyapatite, monetite, and brushite. Acid-base reaction was confirmed by the appearance of stretching peaks in IR spectra of set cements. SEM revealed rod-like crystals and platy crystals. Setting time of cements was 5–12 min. Type III showed significantly higher strength values compared to control. Type III yielded high biocompatibility. Conclusions. Type III CPCs show promise for dental applications. Hindawi Publishing Corporation 2011 2011-09-20 /pmc/articles/PMC3176494/ /pubmed/21941551 http://dx.doi.org/10.1155/2011/467641 Text en Copyright © 2011 Rania M. Khashaba et al. https://creativecommons.org/licenses/by/3.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Khashaba, Rania M.
Moussa, Mervet
Koch, Christopher
Jurgensen, Arthur R.
Missimer, David M.
Rutherford, Ronny L.
Chutkan, Norman B.
Borke, James L.
Preparation, Physical-Chemical Characterization, and Cytocompatibility of Polymeric Calcium Phosphate Cements
title Preparation, Physical-Chemical Characterization, and Cytocompatibility of Polymeric Calcium Phosphate Cements
title_full Preparation, Physical-Chemical Characterization, and Cytocompatibility of Polymeric Calcium Phosphate Cements
title_fullStr Preparation, Physical-Chemical Characterization, and Cytocompatibility of Polymeric Calcium Phosphate Cements
title_full_unstemmed Preparation, Physical-Chemical Characterization, and Cytocompatibility of Polymeric Calcium Phosphate Cements
title_short Preparation, Physical-Chemical Characterization, and Cytocompatibility of Polymeric Calcium Phosphate Cements
title_sort preparation, physical-chemical characterization, and cytocompatibility of polymeric calcium phosphate cements
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3176494/
https://www.ncbi.nlm.nih.gov/pubmed/21941551
http://dx.doi.org/10.1155/2011/467641
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