Brushite-Forming Mg-, Zn- and Sr-Substituted Bone Cements for Clinical Applications

Calcium phosphate cements have been in clinical use for the last 10 years. Their most salient features include good biocompatibility, excellent bioactivity, self-setting characteristics, low setting temperature, adequate stiffness, and easy shaping to accomodate any complicated geometry. They are co...

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Main Authors: José M.F. Ferreira, Sandra Pina
Format: Article
Language:English
Published: MDPI AG 2010-01-01
Series:Materials
Subjects:
Online Access:http://www.mdpi.com/1996-1944/3/1/519/
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spelling doaj-8dc0ad5a6aca46bbbc399206c3e5af692020-11-25T02:38:41ZengMDPI AGMaterials1996-19442010-01-013151953510.3390/ma3010519Brushite-Forming Mg-, Zn- and Sr-Substituted Bone Cements for Clinical ApplicationsJosé M.F. FerreiraSandra PinaCalcium phosphate cements have been in clinical use for the last 10 years. Their most salient features include good biocompatibility, excellent bioactivity, self-setting characteristics, low setting temperature, adequate stiffness, and easy shaping to accomodate any complicated geometry. They are commonly used in filling bone defects and trauma surgeries as mouldable paste-like bone substitute materials. Substitution of trace elements, such as Mg, Sr and Zn ions, into the structure of calcium phosphates is the subject of widespread investigation nowadays, because of their impending role in the biological process. Subtle differences in composition and structure of these materials may have a profound effect on their in vivo behaviour. Therefore, the main goal of this paper is to provide a simple, but comprehensive overview of the present achievements relating to brushite-forming cements doped with Mg, Zn and Sr, and to identify new developments and trends. In particular, the influence of ionic substitution on the chemical, physical and biological properties of these materials is discussed. http://www.mdpi.com/1996-1944/3/1/519/brushitemagnesiumstrontiumzincbone cements
collection DOAJ
language English
format Article
sources DOAJ
author José M.F. Ferreira
Sandra Pina
spellingShingle José M.F. Ferreira
Sandra Pina
Brushite-Forming Mg-, Zn- and Sr-Substituted Bone Cements for Clinical Applications
Materials
brushite
magnesium
strontium
zinc
bone cements
author_facet José M.F. Ferreira
Sandra Pina
author_sort José M.F. Ferreira
title Brushite-Forming Mg-, Zn- and Sr-Substituted Bone Cements for Clinical Applications
title_short Brushite-Forming Mg-, Zn- and Sr-Substituted Bone Cements for Clinical Applications
title_full Brushite-Forming Mg-, Zn- and Sr-Substituted Bone Cements for Clinical Applications
title_fullStr Brushite-Forming Mg-, Zn- and Sr-Substituted Bone Cements for Clinical Applications
title_full_unstemmed Brushite-Forming Mg-, Zn- and Sr-Substituted Bone Cements for Clinical Applications
title_sort brushite-forming mg-, zn- and sr-substituted bone cements for clinical applications
publisher MDPI AG
series Materials
issn 1996-1944
publishDate 2010-01-01
description Calcium phosphate cements have been in clinical use for the last 10 years. Their most salient features include good biocompatibility, excellent bioactivity, self-setting characteristics, low setting temperature, adequate stiffness, and easy shaping to accomodate any complicated geometry. They are commonly used in filling bone defects and trauma surgeries as mouldable paste-like bone substitute materials. Substitution of trace elements, such as Mg, Sr and Zn ions, into the structure of calcium phosphates is the subject of widespread investigation nowadays, because of their impending role in the biological process. Subtle differences in composition and structure of these materials may have a profound effect on their in vivo behaviour. Therefore, the main goal of this paper is to provide a simple, but comprehensive overview of the present achievements relating to brushite-forming cements doped with Mg, Zn and Sr, and to identify new developments and trends. In particular, the influence of ionic substitution on the chemical, physical and biological properties of these materials is discussed.
topic brushite
magnesium
strontium
zinc
bone cements
url http://www.mdpi.com/1996-1944/3/1/519/
work_keys_str_mv AT josemfferreira brushiteformingmgznandsrsubstitutedbonecementsforclinicalapplications
AT sandrapina brushiteformingmgznandsrsubstitutedbonecementsforclinicalapplications
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