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首页> 外文期刊>Biomaterials >In vitro degradation of polymeric networks of poly(propylene fumarate) and the crosslinking macromer poly(propylene fumarate)-diacrylate.
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In vitro degradation of polymeric networks of poly(propylene fumarate) and the crosslinking macromer poly(propylene fumarate)-diacrylate.

机译:聚富马酸丙二醇酯和交联大分子单体聚富马酸丙二醇酯-二丙烯酸酯的聚合物网络的体外降解。

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摘要

Polymeric networks of poly(propylene fumarate) (PPF) crosslinked with poly(propylene fumarate)-diacrylate (PPF-DA) are currently being investigated as an injectable, biodegradable bone cement. This study examined the effect of crosslinking density, medium pH, and the incorporation of a beta-tricalcium phosphate (beta-TCP) filler on the in vitro degradation of PPF/PPF-DA. Cylindrical specimens were submerged in buffered saline at 37 degrees C and the change in weight, geometry, and compressive mechanical properties were monitored over a 52-week period. All formulations showed an initial increase in modulus and yield strength over the first 12 weeks, achieving maxima of 1307+/-101 and 51+/-3MPa, respectively, for the beta-TCP composite. PPF/PPF-DA networks with the lower crosslinking density demonstrated the greatest degradation with a 17% mass loss. Samples in the lower buffer pH 5.0 compared to physiological pH 7.4 did not show any differences in mass loss, but exhibited a faster decrease in the compressive strength over time. The beta-TCP composites maintained their mechanical properties at the level following their initial increase. These results show that the degradation of PPF/PPF-DA networks can be controlled by the crosslinking density, accelerated at a lower pH, and prolonged with the incorporation of the beta-TCP filler.
机译:目前正在研究将聚富马酸丙二醇酯(PPF)与聚富马酸丙二酯-二丙烯酸酯(PPF-DA)交联的聚合物网络,作为可注射,可生物降解的骨水泥。这项研究检查了交联密度,中等pH值和β-磷酸三钙(β-TCP)填料的掺入对PPF / PPF-DA体外降解的影响。将圆柱形样品浸入37摄氏度的缓冲盐水中,并在52周的时间内监测重量,几何形状和压缩机械性能的变化。所有配方在开始的12周内均显示出模量和屈服强度的初始增加,对于β-TCP复合材料,分别达到1307 +/- 101和51 +/- 3MPa的最大值。具有较低交联密度的PPF / PPF-DA网络显示出最大的降解,质量损失为17%。与生理pH 7.4相比,在较低pH 5.0的缓冲液中样品未显示出质量损失的任何差异,但随着时间的推移显示出抗压强度的更快下降。 β-TCP复合材料的机械性能保持在最初增加后的水平。这些结果表明,PPF / PPF-DA网络的降解可以通过交联密度来控制,在较低的pH值下可以加速,并且可以通过引入β-TCP填料来延长。

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