材料科学
多孔性
钙
模拟体液
磷灰石
抗压强度
生物相容性
扫描电子显微镜
骨水泥
水泥
磷酸盐
生物材料
矿物学
化学工程
复合材料
核化学
化学
冶金
纳米技术
生物化学
工程类
作者
Malin Nilsson,E. Fernández,Stéphanie Sarda,Lars Lidgren,Josep A. Planell
出处
期刊:Journal of Biomedical Materials Research
[Wiley]
日期:2002-06-04
卷期号:61 (4): 600-607
被引量:135
摘要
Abstract Apatitic cements have shown excellent biocompatibility and adequate mechanical properties but have slow resorption in the human body. To assure that new bone tissue grows into the bone defect, a certain porosity is necessary although hard to achieve in injectable cements with suitable mechanical properties. An attempt was made by mixing alpha‐tricalcium phosphate (α‐TCP), calcium sulphate hemihydrate (CSH) and an aqueous solution containing 2.5 wt% of Na 2 HPO 4 . The aim was to obtain a material containing two phases: a) one apatitic phase (calcium‐deficient hydroxyapatite; CDHA) and b) one resorbable phase (calcium sulphate dihydrate; CSD). α‐TCP and CSH mixtures were produced at relative intervals of 20 wt%. The liquid‐to−powder (L/P) ratio to obtain a paste was 0.32 mLg −1 . The highest compressive strength (34 MPa) was obtained for the pure α‐TCP sample. The strength was, in a first approximation, directly correlated to the weight proportions of the powders. X‐ray diffraction analysis showed that the relative intensity for CDHA increased linearly, and the one for CSD decreased exponentially, when the amount of α‐TCP increased. Thus, CSH ceased to transform to CSD when the amount of α‐TCP increased. Observations in environmental scanning electron microscopy confirmed the X‐ray diffraction results. CSH‐crystals (100 μm) were embedded in the HA‐matrix permitting gradual porosity in the material when resorbed. © 2002 Wiley Periodicals, Inc. J Biomed Mater Res 61: 600–607, 2002
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