A new bioactive bone cement (designated GBC), consisting of bioactive glass beads as an inorganic filler and polymethylmethacrylate (PMMA) as an organic matrix, has been developed. The purpose of the present study was to examine the effect of the amount of glass bead filler added to GBC on its mecha
Effects of nano HAP on biological and structural properties of glass bone cement
β Scribed by Qiang Fu; Nai Zhou; Wenhai Huang; Deping Wang; Liying Zhang; Haifeng Li
- Publisher
- John Wiley and Sons
- Year
- 2005
- Tongue
- English
- Weight
- 518 KB
- Volume
- 74A
- Category
- Article
- ISSN
- 1549-3296
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β¦ Synopsis
Abstract
A novel type of glassβbased nanoscale hydroxyapatite (HAP) bioactive bone cement (designed as GBNHAPC) was synthesized by adding nanoscale hydroxyapatite crystalline (20β40 nm), into the selfβsetting glassβbased bone cement (GBC). The inhibition rate of nanoscale HAP and micron HAP on osteosarcoma U2βOS cells was examined. The effects of nanoscale HAP on the crystal phase, microstructure and compressive strength of GBNHAPC were studied, respectively. It was concluded that nanoscale HAP could inhibit the cell proliferation, whereas micron HAP could not, and that nanoscale HAP could be dispersed in the cement evenly and the morphology did not change significantly after a longer immersion time. XRD and FTIR results show nanoscale HAP did not affect the setting reaction of the cement. Furthermore, GBNHAPC had a higher compressive strength (92.6 Β± 3.8 MPa) than GBC (80.1 Β± 3.0 MPa). It was believed that GBNHAPC might be a desirable biomaterial that could not only fill bone defects but also inhibit cancer cell growth. Β© 2005 Wiley Periodicals, Inc. J Biomed Mater Res, 2005
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