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Bioactive PMMA-based cement incorporated with nano-sized rutile particles
Bioactive bone cement with mechanical properties higher than that of commercial polymethylmethacrylate (PMMA) bone cement are strongly desired to be developed. In the present study, PMMA-based cement incorporated with nano-sized rutile particles was prepared. The PMMA-based cement (rutile content was 50 wt-%) shows the compressive strength (136 MPa) higher than that of commercial PMMA bone cement (88 MPa). The hardened cement formed apatite on the surface in a simulated body fluid within 3 days. Therefore, this PMMA-based cement incorporated with rutile particles might be useful as cement for fixation of prostheses as well as self-setting bone substitutes, because of its high apatite forming ability and mechanical strength.
Bioactive PMMA-based cement incorporated with nano-sized rutile particles
Bioactive bone cement with mechanical properties higher than that of commercial polymethylmethacrylate (PMMA) bone cement are strongly desired to be developed. In the present study, PMMA-based cement incorporated with nano-sized rutile particles was prepared. The PMMA-based cement (rutile content was 50 wt-%) shows the compressive strength (136 MPa) higher than that of commercial PMMA bone cement (88 MPa). The hardened cement formed apatite on the surface in a simulated body fluid within 3 days. Therefore, this PMMA-based cement incorporated with rutile particles might be useful as cement for fixation of prostheses as well as self-setting bone substitutes, because of its high apatite forming ability and mechanical strength.
Bioactive PMMA-based cement incorporated with nano-sized rutile particles
Hashimoto, M. (Autor:in) / Takadama, H. (Autor:in) / Mizuno, M. (Autor:in) / Kokubo, T. (Autor:in) / Goto, K. (Autor:in) / Nakamuro, T. (Autor:in)
2006
4 Seiten, 4 Bilder, 6 Quellen
Aufsatz (Konferenz)
Englisch
Bioactive PMMA-Based Cement Incorporated with Nano-Sized Rutile Particles
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