Theoretical and experimental approach to test the cohesion of calcium phosphate pastes

Recent studies have revealed that the ability of a calcium phosphate cement paste to harden in a physiological environment without desintegrating into small particles might be a key property to ensure a safe and reliable clinical use of calcium phosphate cements. However, this property called cohesi...

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Main Authors: M Bohner, N Doebelin, G Baroud
Format: Article
Language:English
Published: AO Research Institute Davos 2006-08-01
Series:European Cells & Materials
Subjects:
Online Access:http://www.ecmjournal.org/journal/papers/vol012/pdf/v012a03.pdf
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spelling doaj-737894fce4d6437f883c4b3f520a4ba92020-11-24T22:29:59Zeng AO Research Institute DavosEuropean Cells & Materials1473-22622006-08-01122635Theoretical and experimental approach to test the cohesion of calcium phosphate pastesM BohnerN DoebelinG BaroudRecent studies have revealed that the ability of a calcium phosphate cement paste to harden in a physiological environment without desintegrating into small particles might be a key property to ensure a safe and reliable clinical use of calcium phosphate cements. However, this property called cohesion is not well understood and has not been studied extensively. The goal of the present study was to better understand which factors affect the cohesion of a calcium phosphate paste using the combination of a theoretical and experimental approach. In the theoretical approach, factors expected to influence the paste cohesion such as Van der Waals forces, electrostatic and steric interactions, as well as osmotic effects were listed and discussed. In the experimental approach, a new method to measure the cohesion of a non-setting calcium phosphate paste was presented and used to assess the effects of various factors on this property. The new method allowed a continuous measurement of cohesion and gave reproducible results. The experimental results confirmed the theoretical predictions: an increase of the liquid-to-powder ratio of the paste and of the powder particle size, as well as the addition of citrate ions and in limited cases dissolved xanthan polymer chains reduced the paste cohesion.http://www.ecmjournal.org/journal/papers/vol012/pdf/v012a03.pdfCohesioncalcium phosphatecementviscositypastevertebroplastyrheology
collection DOAJ
language English
format Article
sources DOAJ
author M Bohner
N Doebelin
G Baroud
spellingShingle M Bohner
N Doebelin
G Baroud
Theoretical and experimental approach to test the cohesion of calcium phosphate pastes
European Cells & Materials
Cohesion
calcium phosphate
cement
viscosity
paste
vertebroplasty
rheology
author_facet M Bohner
N Doebelin
G Baroud
author_sort M Bohner
title Theoretical and experimental approach to test the cohesion of calcium phosphate pastes
title_short Theoretical and experimental approach to test the cohesion of calcium phosphate pastes
title_full Theoretical and experimental approach to test the cohesion of calcium phosphate pastes
title_fullStr Theoretical and experimental approach to test the cohesion of calcium phosphate pastes
title_full_unstemmed Theoretical and experimental approach to test the cohesion of calcium phosphate pastes
title_sort theoretical and experimental approach to test the cohesion of calcium phosphate pastes
publisher AO Research Institute Davos
series European Cells & Materials
issn 1473-2262
publishDate 2006-08-01
description Recent studies have revealed that the ability of a calcium phosphate cement paste to harden in a physiological environment without desintegrating into small particles might be a key property to ensure a safe and reliable clinical use of calcium phosphate cements. However, this property called cohesion is not well understood and has not been studied extensively. The goal of the present study was to better understand which factors affect the cohesion of a calcium phosphate paste using the combination of a theoretical and experimental approach. In the theoretical approach, factors expected to influence the paste cohesion such as Van der Waals forces, electrostatic and steric interactions, as well as osmotic effects were listed and discussed. In the experimental approach, a new method to measure the cohesion of a non-setting calcium phosphate paste was presented and used to assess the effects of various factors on this property. The new method allowed a continuous measurement of cohesion and gave reproducible results. The experimental results confirmed the theoretical predictions: an increase of the liquid-to-powder ratio of the paste and of the powder particle size, as well as the addition of citrate ions and in limited cases dissolved xanthan polymer chains reduced the paste cohesion.
topic Cohesion
calcium phosphate
cement
viscosity
paste
vertebroplasty
rheology
url http://www.ecmjournal.org/journal/papers/vol012/pdf/v012a03.pdf
work_keys_str_mv AT mbohner theoreticalandexperimentalapproachtotestthecohesionofcalciumphosphatepastes
AT ndoebelin theoreticalandexperimentalapproachtotestthecohesionofcalciumphosphatepastes
AT gbaroud theoreticalandexperimentalapproachtotestthecohesionofcalciumphosphatepastes
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