Title of article :
Development of high-viscosity, two-paste bioactive bone cements
Author/Authors :
S. Deb and R. Srikant، نويسنده , , L. Aiyathurai، نويسنده , , J.A. Roether، نويسنده , , Z.B. Luklinska، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2005
Abstract :
Self-curing two-paste bone cements have been developed using methacrylate monomers with a view to formulate cements with low polymerization exotherm, low shrinkage, better mechanical properties, and improved adhesion to bone and implant surfaces. The monomers include bis-phenol A glycidyl dimethacrylate (bis-GMA), urethane dimethacrylate (UDMA) and triethylene glycol dimethacrylate (TEGDMA) as a viscosity modifier. Two-paste systems were formulated containing 60% by weight of a bioactive ceramic, hydroxyapatite. A methacroyloxy silane (A174) was used as a coupling agent due to its higher water stability in comparison to other aminosilanes to silanate the hydroxyapatite particles prior to composite formulation. A comparison of the FT-infrared spectrum of hydroxyapatite and silanated hydroxyapatite showed the presence of the carbonyl groups ( 1720 cm−1), –C=C–( 1630 cm−1) and Si–O– (1300–1250 cm−1) which indicated the availability of silane groups on the filler surface. Two methods of mixing were effected to form the bone cement: firstly by mixing in an open bowl and secondly by extruding the two pastes by an auto-mixing tip using a gun to dispense the pastes. Both types of cements yielded low polymerization exotherms with good mechanical properties; however, the lower viscosity of UDMA allowed better extrusion and handling properties. A biologically active apatite layer formed on the bone cement surface within a short period after its immersion in simulated body fluid, demonstrating in vitro bioactivity of the composite. This preliminary data thus suggests that UDMA is a viable alternative to bis-GMA as a polymerizable matrix in the formation of bone cements.
Keywords :
Orthopaedic bone cements , Composites , mechanical properties , Hydroxypatite
Journal title :
Biomaterials
Journal title :
Biomaterials