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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Crosslinking characteristics of an injectable poly(propylene fumarate)/beta-tricalcium phosphate paste and mechanical properties of the crosslinked composite for use as a biodegradable bone cement.
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Crosslinking characteristics of an injectable poly(propylene fumarate)/beta-tricalcium phosphate paste and mechanical properties of the crosslinked composite for use as a biodegradable bone cement.

机译:可注射的聚(富马酸丙二酯)/β-磷酸三钙糊剂的交联特性和用作生物可降解骨水泥的交联复合材料的机械性能。

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摘要

We investigated the crosslinking characteristics of an injectable composite paste of poly(propylene fumarate) (PPF), N-vinyl pyrrolidinone (N-VP), benzoyl peroxide (BP), sodium chloride (NaCl), and beta-tricalcium phosphate (beta-TCP). We examined the effects of PPF molecular weight, N-VP/PPF ratio, BP/PPF ratio, and NaCl weight percent on the crosslinking temperature, heat release upon crosslinking, gel point, and the composite compressive strength and modulus. The maximum crosslinking temperature did not vary widely among formulations, with the absolute values falling between 38 degrees and 48 degrees C, which was much lower than that of 94 degrees C for poly(methyl methacrylate) bone cement controls tested under the same conditions. The total heat released upon crosslinking was decreased by an increase in PPF molecular weight and a decrease in N-VP/PPF ratio. The gel point was affected strongly by the PPF molecular weight, with a decrease in PPF molecular weight more rapidly leading to a gel point. An increase in initiator concentration had the same effect to a lesser degree. The time frame for curing was varied from 1-121 min, allowing the composite to be tailored to specific applications. The compressive strength and compressive modulus values increased with decreasing N-VP/PPF, increasing NaCl content, and increasing BP/PPF ratio. For all formulations, the compressive strength values fell between 1 and 12 MPa, and the compressive modulus values fell between 23 and 265 MPa. These data suggest that injectable PPF/beta-TCP pastes can be prepared with handling characteristics appropriate for clinical orthopedic applications and that the mechanical properties of the cured composites are suitable for trabecular bone replacement. Copyright 1999 John Wiley & Sons, Inc.
机译:我们研究了聚(富马酸丙二酯)(PPF),N-乙烯基吡咯烷酮(N-VP),过氧化苯甲酰(BP),氯化钠(NaCl)和β-磷酸三钙(β- TCP)。我们检查了PPF分子量,N-VP / PPF比,BP / PPF比和NaCl重量百分比对交联温度,交联时的热释放,胶凝点以及复合材料抗压强度和模量的影响。最大的交联温度在各种配方之间变化不大,绝对值在38到48摄氏度之间,这远低于在相同条件下测试的聚(甲基丙烯酸甲酯)骨水泥对照的94摄氏度。 PPF分子量的增加和N-VP / PPF比值的降低都降低了交联时释放的总热量。 PPF分子量强烈影响凝胶点,PPF分子量的降低会更快地导致凝胶点。引发剂浓度的增加在较小程度上具有相同的作用。固化时间范围从1-121分钟不等,从而使复合材料可根据特定应用进行定制。抗压强度和压缩模量值随着N-VP / PPF的减少,NaCl含量的增加和BP / PPF的比率的增加而增加。对于所有配方,抗压强度值在1到12 MPa之间,而抗压模量值在23到265 MPa之间。这些数据表明,可以制备具有适合于临床骨科应用的处理特性的可注射PPF /β-TCP糊剂,并且固化复合材料的机械性能适合于小梁骨置换术。版权所有1999 John Wiley&Sons,Inc.

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