Characterization of bone cements prepared with functionalized methacrylates and hydroxyapatite
- 1 January 2001
- journal article
- Published by Taylor & Francis in Journal of Biomaterials Science, Polymer Edition
- Vol. 12 (8) , 893-910
- https://doi.org/10.1163/156856201753113088
Abstract
Bone cements prepared with methyl methacrylate and either methacrylic acid or diethyl amino ethyl methacrylate as comonomers were characterized by infrared spectroscopy, nuclear magnetic resonance, gel permeation chromatography, dynamic mechanical thermal analysis, and mechanical testing. Selected formulations containing these functionalized methacrylates were filled with hydroxyapatite and studied in terms of their properties in tension, compression and bending, and X-ray diffraction. It was found that residual monomer was not greatly affected by the presence of either acid or basic comonomers in the unfilled bone cements. In contrast, molecular weight, curing times, and glass transition temperature were composition dependent. For samples with acidic comonomer, a faster curing time, higher molecular weight, and higher glass transition temperatures were observed with respect to those with the basic comonomer. X-ray diffraction revealed that the crystalline structure was not affected by the nature of comonomer in the bone cement while scanning electron microscopy showed that hydroxyapatite remained as clusters in the bone cement.The mechanical properties of filled bone cements depended mainly on composition and type of testing. Hydroxyapatite-filled bone cements fullfilled the minimum compressive strength (70 MPa) required for bone cement use. However, the minimum tensile strength (30 MPa) was only fullfilled by cements prepared without comonomer and those containing methacrylic acid. The minimum bending strength requirement (50 MPa) was not satisfied by any of the formulations studied.Keywords
This publication has 17 references indexed in Scilit:
- Osteoblast adhesion on biomaterialsBiomaterials, 2000
- Polymethylmethacrylate-based bone cement modified with hydroxyapatiteJournal of Biomedical Materials Research, 1999
- Fracture evaluation of acrylic bone cements modified with hydroxyapatite: influence of the storage conditionsJournal of Materials Science: Materials in Medicine, 1999
- Properties of acrylic bone cement: State of the art reviewJournal of Biomedical Materials Research, 1997
- Analysis of the leaching and toxicity of new amine activators for the curing of acrylic bone cements and compositesBiomaterials, 1997
- Flexural and fatigue properties of a bone cement based upon polyethylmethacrylate and hydroxyapatiteJournal of Materials Science: Materials in Medicine, 1995
- Experimental studies on a new bioactive bone cement: hydroxyapatite composite resinBiomaterials, 1994
- Physical characterization of acrylic bone cement cured with new accelerator systemsClinical Materials, 1991
- Halato-telechelic polymers. 12. Block copolymerization of polystyrene and polybutadiene via ionic interactionsJournal of Polymer Science Part C: Polymer Letters, 1986
- Setting properties of bone cement with added synthetic hydroxyapatiteBiomaterials, 1985