首页> 外文期刊>Acta biomaterialia >Eugenol derivatives immobilized in auto-polymerizing formulations as an approach to avoid inhibition interferences and improve biofunctionality in dental and orthopedic cements.
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Eugenol derivatives immobilized in auto-polymerizing formulations as an approach to avoid inhibition interferences and improve biofunctionality in dental and orthopedic cements.

机译:丁香酚衍生物固定在自动聚合配方中,可避免在牙科和骨科水泥中产生抑制干扰并改善生物功能。

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摘要

Auto-polymerizing formulations based on poly(ethyl methacrylate) (PEMA) and eugenol derivatives are reported for dental and orthopedic applications. Spherical beads of PEMA were used as the pre-polymer powder and mixed with combinations of ethyl methacrylate and eugenyl methacrylate (EgMA) or ethoxyeugenyl methacrylate (EEgMA). A range of concentrations from 10 to 30 wt.% of EgMA or EEgMA were used to impart bioactivity properties to the cements. Increasing concentrations of the eugenol derivatives decreased the maximum polymerization temperatures from 69 to 37 degrees C without altering the working or setting time. At concentrations of 10 and 15 wt.% of EgMA or EEgMA a noticeable increase in the compressive (8%), flexural (40%) and tensile (24%) strengths were recorded in comparison to the control cements containing PEMA/ethyl methacrylate only. In addition to the improvement in mechanical properties the cements yielded a slightly crosslinked network due to the participation of the allylic group present in the eugenol derivatives, the presence of which has an intrinsically bactericidal effect against Escherichia coli and Streptococcus mutans strains, as reported in a previous study, thus enhancing the properties of the cements.
机译:据报道,基于聚甲基丙烯酸乙酯(PEMA)和丁香酚衍生物的自动聚合配方可用于牙科和整形外科领域。将PEMA的球形珠粒用作预聚物粉末,并与甲基丙烯酸乙酯和甲基丙烯酸丁烯二酯(EgMA)或甲基丙烯酸乙氧基丁二烯酯(EEgMA)的混合物混合。 EgMA或EEgMA的浓度范围为10至30 wt。%,以赋予水泥生物活性。丁香酚衍生物浓度的增加将最大聚合温度从69摄氏度降低到37摄氏度,而没有改变工作或凝固时间。与仅含PEMA /甲基丙烯酸乙酯的对照水泥相比,在EgMA或EEgMA的浓度为10%和15%(重量)时,压缩强度(8%),弯曲强度(40%)和拉伸强度(24%)显着增加。 。除了力学性能的改善外,由于丁香酚衍生物中存在的烯丙基基团的参与,水泥还产生了一个轻微交联的网络,如前所述,丁香酚衍生物的存在对大肠杆菌和变形链球菌具有内在的杀菌作用。以前的研究,从而增强了水泥的性能。

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