Effects of high-energy ball-milling on injectability and strength of β-tricalcium-phosphate cement

被引:17
作者
Bae, Jiyoung [1 ]
Ida, Yumika [1 ]
Sekine, Kazumitsu [1 ]
Kawano, Fumiaki [2 ]
Hamada, Kenichi [1 ]
机构
[1] Univ Tokushima, Grad Sch, Inst Biomed Sci, Dept Biomat & Bioengn, Kuramoto, Tokushima 7708504, Japan
[2] Univ Tokushima, Grad Sch, Inst Biomed Sci, Dept Comprehens Dent, Kuramoto, Tokushima 7708504, Japan
基金
日本学术振兴会;
关键词
beta-TCP; Self-setting; Hydroxyapatite; Compressive strength; Diametral tensile strength; Injectability; Planetary ball-milling; LIMITED INJECTABILITY; HYPODERMIC INJECTION; CALCIUM PHOSPHATES; IONIC MODIFICATION; PART II; BIOCOMPATIBILITY; HYDROXYAPATITE; VISCOSITY; IMPROVEMENT; RESORPTION;
D O I
10.1016/j.jmbbm.2015.03.005
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Calcium phosphate cement (CPC) offers many advantages as a bone-substitution material. The objective of this study is to develop a new CPC that simultaneously exhibits fine injectability, a short setting time, and high strength. beta-tricalcium phosphate (beta-TCP, control) powder was ball-milled for 24 h to produce a new cement powder. The modified beta-TCP after 24 h milling (m beta-TCP-24 h) exhibited excellent injectability even 1 h after mixing. The mechanical properties of the set cement (compact) were evaluated using compressive strength (CS) and diametral tensile strength (DTS) testing. The CS and DTS values of the mp-TCP-24 h compacts were 8.02 MPa and 2.62 MPa, respectively, at 5 h after mixing, and were 49.6 MPa and 7.9 MPa, respectively, at 2 weeks after mixing. All the CS and DTS values of the m beta-TCP-24 h compacts were significantly higher than those of the control for the same duration after mixing. These results suggest that the mechanochemically modified beta-TCP powder dissolves rapidly and accelerates hydroxyapatite precipitation, which successfully shortens the cement setting time and enhances the strength. This study supports that m beta-TCP-24 h is a promising candidate for use in injectable CPCs with improved strength. (C) 2015 Elsevier Ltd. All rights reserved.
引用
收藏
页码:77 / 86
页数:10
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