Paffenbarger Research Center, American Dental Association Foundation, National Institute of Standards and Technology, 100 Bureau Drive Stop 8546, Gaithersburg, MD, 20899-8546, USA.
J Mater Sci Mater Med. 2010 Feb;21(2):797-805. doi: 10.1007/s10856-009-3873-3. Epub 2009 Sep 19.
This study explores water sorption, hygroscopic expansion, mechanical strength and ion release from the experimental amorphous calcium phosphate (ACP) composites formulated for application as endodontic sealers. Light-cure (LC) and dual-cure (DC; combined light and chemical cure) resins comprised urethane dimethacrylate (UDMA), 2-hydroxyethyl methacrylate (HEMA), methacryloyloxyethyl phthalate (MEP) and a high molecular mass oligomeric co-monomer, poly(ethyleneglycol)-extended UDMA (PEG-U) (designated UPHM resin). To fabricate composites, a mass fraction of 60% UPHM resin was blended with a mass fraction of 40% as-made (am-) or ground (g-) ACP. Glass-filled composites were used as controls. Both DC and LC ACP UPHM composites exhibited relatively high levels of water sorption accompanied by a significant hygroscopic expansion. The latter may potentially be useful to offset high polymerization stresses that develop in these materials. Ion release profiles of the experimental materials confirmed their potential for regeneration of mineral-deficient tooth structures. Their moderate to low mechanical strength after 3 months of aqueous immersion did not diminish the enthusiasm for the proposed use as endodontic sealers. For that application, DC g-ACP composites appear to be the most adequate, but micro-leakage and quantitative leachability studies are needed to fully establish their suitability.
本研究探讨了实验性无定形磷酸钙(ACP)复合材料的吸水、吸湿膨胀、机械强度和离子释放,这些复合材料旨在用作根管封闭剂。光固化(LC)和双重固化(DC;光和化学联合固化)树脂由二甲基丙烯酸酯(UDMA)、2-羟乙基甲基丙烯酸酯(HEMA)、邻苯二甲酸甲氧基乙酯(MEP)和高分子量齐聚物共聚单体聚乙二醇扩展 UDMA(PEG-U)(命名为 UPHM 树脂)组成。为了制备复合材料,将 UPHM 树脂的质量分数为 60%与制成的(am-)或研磨的(g-)ACP 的质量分数为 40%混合。玻璃填充复合材料用作对照。DC 和 LC ACP UPHM 复合材料均表现出相对较高的吸水率,伴随着显著的吸湿膨胀。后者可能有助于抵消这些材料中产生的高聚合应力。实验材料的离子释放曲线证实了它们在再生矿物缺乏牙体结构方面的潜力。经过 3 个月水浸后,其适中至低的机械强度并没有降低将其用作根管封闭剂的应用热情。对于该应用,DC g-ACP 复合材料似乎是最合适的,但需要进行微渗漏和定量浸出研究,以充分确定其适用性。