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From Natural Products to Polymeric Derivatives of 'Eugenol':A New Approach for Preparation of Dental Composites and Orthopedic Bone Cements

机译:从天然产物到“丁香酚”的聚合物衍生物:制备牙科复合材料和骨科骨水泥的新方法

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摘要

Polymers with eugenol moieties covalently bonded to the macromolecular chains were synthesized for potential application in orthopedic and dental cements. First, eugenol was functionalized with polymerizable groups. The synthetic methods employed afforded two different methacrylic derivatives, where the acrylic and eugenol moieties were either directly bonded, eugenyl methacrylate (EgMA), or separated through an oxyethylene group, ethoxyeugenyl methacrylate (EEgMA). A typical Fisher esterification reaction was used for the synthesis of EgMA and EEgMA, affording the desired monomers in 80% yields. Polymerization of each of the novel monomers, at low conversion, provided soluble polymers consisting of hydrocarbon macromolecules with pendant eugenol moieties. At high conversions only cross-linked polymers were obtained, attributed to participation of the allylic double bonds in the polymerization reaction. In addition, copolymers of each eugenol derivative with ethyl methacrylate (EMA) were prepared at low conversion, with the copolymerization reaction studied by assuming the terminal model and the reactivity ratios determined according to linear and nonlinear methods. The values obtained were r_(EgMA)=1.48, r_(EMA)=0.55 and r_(EEgMA)=1.22, r_(EMA)=0.42. High molecular weight polymers and copolymers were obtained at low conversion. Analysis of thermal properties revealed a T_g of 95 deg C for PEgMA and of 20 deg C for PEEgMA and an increase in the thermal stability for the eugenol derivatives polymers and copolymers with respect to that of PEMA. Water sorption of the copolymers was found to decrease with the eugenol derivative content. Both monomers EgMA and EEgMA showed antibacterial activity against Streptococcus mutans, producing inhibition halos of 7 and 21 mm, respectively. Finally, cell culture studies revealed that the copolymers did not leach any toxic eluants and showed good cellular proliferation with respect to PEMA. This study thus indicates that the eugenyl methacrylate derivatives are potentially good candidates for dental and orthopedic cements.
机译:具有在大分子链上共价键合的丁香酚成分的聚合物被合成用于骨科和牙科用胶粘剂中。首先,丁香酚被可聚合基团官能化。所使用的合成方法提供了两种不同的甲基丙烯酸衍生物,其中丙烯酸和丁子香酚部分直接键合,甲基丙烯酸丁烯酯(EgMA),或通过氧乙烯基分离,甲基丙烯酸乙氧基丁二烯酯(EEgMA)。典型的Fisher酯化反应用于EgMA和EEgMA的合成,以80%的收率提供所需的单体。每种新型单体的低转化率聚合提供了由具有大分子丁香酚部分的烃大分子组成的可溶性聚合物。在高转化率下,仅由于烯丙基双键参与聚合反应而获得了交联聚合物。另外,在低转化率下制备每种丁香酚衍生物与甲基丙烯酸乙酯(EMA)的共聚物,并通过假设末端模型和根据线性和非线性方法确定的反应率来研究共聚反应。获得的值是r_(EgMA)= 1.48,r_(EMA)= 0.55和r_(EEgMA)= 1.22,r_(EMA)= 0.42。以低转化率获得高分子量的聚合物和共聚物。热性能分析表明,PEgMA的T_g为95℃,PEEgMA的T_g为20℃,丁香酚衍生物聚合物和共聚物的热稳定性相对于PEMA有所提高。发现共聚物的吸水率随着丁香酚衍生物含量的降低而降低。单体EgMA和EEgMA均显示出对变形链球菌的抗菌活性,分别产生7毫米和21毫米的抑制晕圈。最后,细胞培养研究表明,该共聚物没有浸出任何有毒的洗脱液,并且相对于PEMA表现出良好的细胞增殖能力。因此,这项研究表明,甲基丙烯酸丁烯二酯衍生物可能是牙科和整形外科水泥的良好候选物。

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