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Development of New Epoxy Resin Monomers - A Delicate Balance between Skin Allergy and Polymerization Properties

机译:新型环氧树脂单体的研制 - 皮肤过敏和聚合性能之间的微妙平衡

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Epoxy resin monomers (ERMs) are used as building blocks for thermosetting polymers in applications where strong, flexible, and lightweight materials are required. Most epoxy resins are polymers of diglycidyl ether of bisphenol A (DGEBA). It is highly allergenic and causes occupational allergic contact dermatitis and contact allergy in the general population. Thus, measures to prevent exposure by protective clothing and education are not enough. This work describes a continuation of our research aiming at reducing the skin-sensitizing potency of ERMs while maintaining the ability to form polymers. Alternative ERMs were designed and synthesized whereafter the sensitizing potency was determined using the murine local lymph node assay (LLNA). The reactivity of the diepoxides toward a nucleophilic peptide was investigated, and the differences in reactivity explained using computational studies. The diepoxides were reacted with triethylenetetramine, and the formed polymers were tested for technical applicability using thermogravimetric analysis. We had previously shown that the absence of an oxygen atom in the side chains or removal of aromaticity reduced the sensitizing potency compared to that of DGEBA. Thus, a cycloaliphatic analogue 1 of DGEBA without ether oxygen in the side chains was considered promising and was synthesized. As predicted, the sensitizing potency was considerably reduced (10 times) compared to that of DGEBA. However, the technical properties of the polymer of this compound were not considered sufficient. More polar aromatic analogues were investigated, but they could not compete with our previously described ERMs regarding polymerization properties and with 1 regarding low skin sensitization properties. Development of alternative epoxy materials is a delicate balance between allergenic activity and polymerization properties. Tuning of structural properties together with investigation of polymerization conditions combined with skin sensitization studies should be used in industrial research and development. ERM 1 could be used as a lead compound for further studies of aliphatic ERMs.
机译:环氧树脂单体(ERMS)用作在需要强,柔性和轻质材料的应用中的热固性聚合物的构建块。大多数环氧树脂是双酚A(DGEBA)的二缩水甘油醚的聚合物。它是高度过敏性的,导致职业过敏性接触皮炎,并在一般人群中接触过敏。因此,防止防护服和教育暴露的措施是不够的。这项工作描述了我们的研究,旨在降低EMS的皮肤敏感性效力,同时保持形成聚合物的能力。设计和合成的替代ERMS,同后使用鼠局部淋巴结测定(LLNA)测定敏化效力。研究了Diemoxides朝向亲核肽的反应性,并且使用计算研究解释了反应性的差异。用Tri rethenetetramine反应Diewoxide,使用热重分析测试形成的聚合物以进行技术适用性。我们之前已经表明,与DGEBA相比,侧链中的含有氧原子或芳香性的缺失降低了敏化效力。因此,在侧链中没有醚氧的DGEBA的脂族类似物1被认为是有前途的并且被合成。如预测,与DGEBA相比,敏化效力大大降低(10次)。然而,该化合物的聚合物的技术性质不被认为是足够的。研究了更多的极性芳族类似物,但它们不能与先前描述的ERMS竞争,所述ERMS关于聚合性能,并且具有1个关于低皮肤致敏性能。替代环氧材料的发展是过敏活性和聚合性能之间的微妙平衡。应在工业研究和开发中使用与皮肤致敏研究相结合的聚合条件调查,调整结构性质。 ERM1可用作铅化合物,用于进一步研究脂族ERMS。

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