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In Vitro Studies of Composite Bone Filler Based on Poly(Propylene Fumarate) and Biphasic -Tricalcium Phosphate/Hydroxyapatite Ceramic Powder

机译:聚富马酸丙二醇酯和双相磷酸三钙/羟基磷灰石陶瓷粉的复合骨填料的体外研究

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摘要

While many different filler materials have been applied in vertebral augmentation procedures, none is perfect in all biomechanical and biological characteristics. To minimize possible shortages, we synthesized a new biodegradable, injectable, and premixed composite made from poly(propylene fumarate) (PPF) and biphasic -tricalcium phosphate (-TCP)/hydroxyapatite (HAP) ceramics powder and evaluated the material properties of the compound in vitro. We mixed the PPF cross-linked by N-vinyl pyrrolidinone and biphasic -TCP/HAP powder in different ratios with benzoyl peroxide as an initiator. The setting time and temperature were recorded, although they could be manipulated by modulating the concentrations of hydroquinone and N,N-dimethyl-p-toluidine. Degradation, cytocompatibility, mechanical properties, and radiopacity were analyzed after the composites were cured by a cylindrical shape. We also compared the study materials with poly(methyl methacrylate) (PMMA) and PPF with pure HAP particles. Results showed that lower temperature during curing process (38–44°C), sufficient initial mechanical compressive fracture strength (61.1?±?3.7?MPa), and gradual degradation were observed in the newly developed bone filler. Radiopacity in Hounsfield units was similar to PMMA as determined by computed tomography scan. Both pH value variation and cytotoxicity were within biological tolerable limits based on the biocompatibility tests. Mixtures with 70% -TCP/HAP powder were superior to other groups. This study indicated that a composite of PPF and biphasic -TCP/HAP powder is a promising, premixed, injectable biodegradable filler and that a mixture containing 70% -TCP/HAP exhibits the best properties.
机译:尽管许多不同的填充材料已应用于椎体隆突手术,但在所有的生物力学和生物学特性方面都不是完美的。为了最大程度地减少短缺,我们合成了一种新型的可生物降解,可注射和预混合的复合材料,该复合材料由聚富马酸丙二酯(PPF)和双相磷酸三钙(-TCP)/羟基磷灰石(HAP)陶瓷粉制成,并评估了该化合物的材料性能体外。我们将过氧化N-乙烯基吡咯烷酮和双相-TCP / HAP粉末交联的PPF与过氧化苯甲酰作为引发剂混合。记录了凝固时间和温度,尽管可以通过调节氢醌和N,N-二甲基对甲苯胺的浓度来控制它们。复合材料通过圆柱体固化后,进行了降解,细胞相容性,机械性能和不透射线的分析。我们还比较了研究材料与聚甲基丙烯酸甲酯(PMMA)和具有纯HAP颗粒的PPF。结果表明,在新开发的骨填充物中,观察到固化过程中的温度较低(38–44°C),足够的初始机械抗压断裂强度(61.1?±?3.7?MPa)并逐渐降解。通过计算机断层扫描可以确定,Hounsfield单位的射线不透性与PMMA相似。根据生物相容性测试,pH值变化和细胞毒性均在生物耐受的范围内。含有70%-TCP / HAP粉末的混合物优于其他组。这项研究表明,PPF和双相-TCP / HAP粉末的复合材料是一种很有前途的,可预混合的,可注射的可生物降解的填料,并且含有70%-TCP / HAP的混合物表现出最佳的性能。

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