Literature DB >> 9852738

Osteotransductive bone cements.

F C Driessens1, J A Planell, M G Boltong, I Khairoun, M P Ginebra.   

Abstract

Calcium phosphate bone cements (CPBCs) are osteotransductive, i.e. after implantation in bone they are transformed into new bone tissue. Furthermore, due to the fact that they are mouldable, their osteointegration is immediate. Their chemistry has been established previously. Some CPBCs contain amorphous calcium phosphate (ACP) and set by a sol-gel transition. The others are crystalline and can give as the reaction product dicalcium phosphate dihydrate (DCPD), calcium-deficient hydroxyapatite (CDHA), carbonated apatite (CA) or hydroxyapatite (HA). Mixed-type gypsum-DCPD cements are also described. In vivo rates of osteotransduction vary as follows: gypsum-DCPD > DCPD > CDHA approximately CA > HA. The osteotransduction of CDHA-type cements may be increased by adding dicalcium phosphate anhydrous (DCP) and/or CaCO3 to the cement powder. CPBCs can be used for healing of bone defects, bone augmentation and bone reconstruction. Incorporation of drugs like antibiotics and bone morphogenetic protein is envisaged. Load-bearing applications are allowed for CHDA-type, CA-type and HA-type CPBCs as they have a higher compressive strength than human trabecular bone (10 MPa).

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Year:  1998        PMID: 9852738     DOI: 10.1243/0954411981534196

Source DB:  PubMed          Journal:  Proc Inst Mech Eng H        ISSN: 0954-4119            Impact factor:   1.617


  16 in total

Review 1.  Calcium Phosphate Bioceramics: A Review of Their History, Structure, Properties, Coating Technologies and Biomedical Applications.

Authors:  Noam Eliaz; Noah Metoki
Journal:  Materials (Basel)       Date:  2017-03-24       Impact factor: 3.623

2.  [Custom moldable hydroxyapatite collagen composite for repair of osseous defects].

Authors:  R Mai; A Reinsdorf; E Pilling; G Lauer; M Gelinsky; U Eckelt
Journal:  Mund Kiefer Gesichtschir       Date:  2005-01

Review 3.  Biomaterials in orthopaedics.

Authors:  M Navarro; A Michiardi; O Castaño; J A Planell
Journal:  J R Soc Interface       Date:  2008-10-06       Impact factor: 4.118

4.  Self-setting calcium orthophosphate formulations.

Authors:  Sergey V Dorozhkin
Journal:  J Funct Biomater       Date:  2013-11-12

5.  Calcium silicate/calcium phosphate biphasic cements for vital pulp therapy: chemical-physical properties and human pulp cells response.

Authors:  M G Gandolfi; G Spagnuolo; F Siboni; A Procino; V Rivieccio; G A Pelliccioni; C Prati; S Rengo
Journal:  Clin Oral Investig       Date:  2015-03-31       Impact factor: 3.573

6.  Alpha-tricalcium phosphate (α-TCP): solid state synthesis from different calcium precursors and the hydraulic reactivity.

Authors:  Gulcin Cicek; Eda Ayse Aksoy; Caner Durucan; Nesrin Hasirci
Journal:  J Mater Sci Mater Med       Date:  2011-03-29       Impact factor: 3.896

7.  Development of a novel calcium phosphate cement composed mainly of calcium sodium phosphate with high osteoconductivity.

Authors:  Masashi Tanaka; Mitsuru Takemoto; Shunsuke Fujibayashi; Toshiyuki Kawai; Masako Tsukanaka; Kimiaki Takami; Satoshi Motojima; Hikaru Inoue; Takashi Nakamura; Shuichi Matsuda
Journal:  J Mater Sci Mater Med       Date:  2014-03-27       Impact factor: 3.896

8.  Polymeric-calcium phosphate cement composites-material properties: in vitro and in vivo investigations.

Authors:  Rania M Khashaba; Mervet M Moussa; Donald J Mettenburg; Frederick A Rueggeberg; Norman B Chutkan; James L Borke
Journal:  Int J Biomater       Date:  2010-07-29

9.  Factors influencing the compressive strength of an injectable calcium sulfate-hydroxyapatite cement.

Authors:  M Nilsson; L Wielanek; J-S Wang; K E Tanner; L Lidgren
Journal:  J Mater Sci Mater Med       Date:  2003-05       Impact factor: 3.896

10.  Monitoring the setting of calcium-based bone cements using pulse-echo ultrasound.

Authors:  M Nilsson; J Carlson; E Fernandez; J A Planell
Journal:  J Mater Sci Mater Med       Date:  2002-12       Impact factor: 3.896

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