Monvisade Pathavuth, Siriphannon Punnama, Tapcharoen Walailak
Department of Chemistry, Faculty of Science, King Mongkut's Institute of Technology Ladkrabang, Chalongkrung Road, Ladkrabang, Bangkok 10520, Thailand.
J Biomed Mater Res A. 2009 Sep 1;90(3):656-63. doi: 10.1002/jbm.a.32133.
Preparation of hydroxyapatite/poly(ethylene glutarate) (HAp/PEG) composites was carried out by ring-opening polymerization (ROP) of cyclic oligo(ethylene glutarate) in porous HAp scaffolds using various reaction temperatures and times. The content of ROP-PEG interpenetrated into the porous HAp scaffold was about 13-18 wt % with the values of number average molecular weight (overline_M{n}) and weight average molecular weight (overline_M{W}) of 2120-3630 and 2760-5250 g/mol, respectively. The increase in polymerization time and temperature brought about increase in molecular weight of ROP-PEG, but decrease in its content. Compressive strength and compressive modulus of the HAp/PEG composites were about 5.8-20.1 and 105-208 MPa, respectively. These mechanical properties depend upon the effects of distribution, content, and molecular weight of ROP-PEG in the composites. In vitro bioactivity of the HAp/PEG composites was studied by soaking them in simulated body fluid (SBF) for 28 days. The formation of HAp nanocrystal on the composite surfaces through the consumption of calcium and phosphorus from the SBF solution was observed after soaking, indicating the bioactivity of these HAp/PEG composites.
通过在多孔羟基磷灰石(HAp)支架中使用不同的反应温度和时间,使环状低聚(乙烯戊二酸酯)进行开环聚合(ROP),制备了羟基磷灰石/聚(乙烯戊二酸酯)(HAp/PEG)复合材料。渗透到多孔HAp支架中的ROP-PEG含量约为13-18 wt%,数均分子量($\overline{M}{n}$)和重均分子量($\overline{M}{W}$)分别为2120-3630和2760-5250 g/mol。聚合时间和温度的增加导致ROP-PEG分子量增加,但其含量降低。HAp/PEG复合材料的抗压强度和抗压模量分别约为5.8-20.1和105-208 MPa。这些力学性能取决于复合材料中ROP-PEG的分布、含量和分子量的影响。通过将HAp/PEG复合材料浸泡在模拟体液(SBF)中28天来研究其体外生物活性。浸泡后观察到,复合材料表面通过消耗SBF溶液中的钙和磷形成了HAp纳米晶体,表明这些HAp/PEG复合材料具有生物活性。