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首页> 外文期刊>Journal of Composite Materials >In situ curable alpha-hydroxyacid based degradable polymer composites for injectable biomedical applications
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In situ curable alpha-hydroxyacid based degradable polymer composites for injectable biomedical applications

机译:用于注射生物医学应用的可现场固化的基于α-羟酸的可降解聚合物复合材料

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摘要

In situ polymerizable liquid degradable oligomeric polyesters based upon alpha-hydroxyacids were synthesized and characterized. Injectable and in situ curable composites formulated with these oligomeric polyesters and bioabsorble beta-tricalcium phosphate, were prepared at room temperature using the redox-initiation system. The results show that increasing glycolic acid/l-lactic acid molar ratio increased the initial compressive and diametral tensile strengths and curing time but decreased the degree of conversion. Increasing molecular weight of oligomeric polyesters decreased the initial strengths, exotherm and conversion but increased the curing time. Increasing the number of initiator arm decreased the initial strengths and curing time but increased the exotherm and conversion. During the course of degradation, all the materials showed a burst degradation behavior within 24 h, followed by an increase in strength. The degradation rate is found to be dependant upon the molar ratio, molecular weight of oligomeric polyester, number of initiator arm and type of comonomer.
机译:合成并表征了基于α-羟酸的可原位聚合的液体可降解的低聚聚酯。由这些低聚聚酯和生物吸收性β-磷酸三钙配制的可注射和就地固化的复合材料,是在室温下使用氧化还原引发体系制备的。结果表明,增加乙醇酸/ 1-乳酸摩尔比可提高初始压缩和径向拉伸强度和固化时间,但降低转化率。低聚聚酯分子量的增加降低了初始强度,放热和转化率,但是增加了固化时间。引发剂臂数的增加降低了初始强度和固化时间,但增加了放热和转化率。在降解过程中,所有材料均在24小时内显示出破裂的降解行为,然后强度增加。发现降解速率取决于摩尔比,低聚聚酯的分子量,引发剂臂的数量和共聚单体的类型。

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