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Hygroscopic and hydrolytic effects in dental polymer networks

机译:牙科聚合物网络中的吸湿和水解作用

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Objectives. The objective of this manuscript is to outline the factors associated with hygroscopic and hydrolytic effects in dental polymer networks, and to review the literature generated over the past thirty years or more in this area. Methods. Information was gathered from nearly 90 published articles or abstracts appearing in the dental and polymer literature. Studies were predominantly identified through a search of the PubMED database. Results. Studies were included that provided direct evidence for the uptake of solvent by a polymer network and its subsequent physical or chemical effect, or the loss of molecular species into solvents. An attempt was made to select articles that spanned the timeframe from approximately 1970 to today to ensure that most of the classic literature as well as the latest information was included. Conclusions. Dental polymer networks have been shown to be susceptible to hygroscopic and hydrolytic effects to varying extents dependent upon their chemistry and structure. The importance of these effects on the clinical performance of polymer restoratives is largely unknown, though numerous investigators have alluded to the potential for reduced service lives. Significance. While the physical and mechanical properties of these materials may be significantly altered by the effects of solvent uptake and component elution, what may constitute the greatest concern is the short-term release of unreacted components and the long-term elution of degradation products in the oral cavity, both of which should be strongly considered during restorative material development.
机译:目标。该手稿的目的是概述与牙科聚合物网络中的吸湿和水解作用相关的因素,并回顾该领域过去三十年或更长时间的文献。方法。信息来自牙科和聚合物文献中出现的近90篇发表的文章或摘要。研究主要通过搜索PubMED数据库进行鉴定。结果。包括的研究为聚合物网络对溶剂的吸收及其随后的物理或化学作用,或分子种类进入溶剂的损失提供了直接的证据。试图选择从1970年到今天的时间跨度的文章,以确保包括大多数经典文献以及最新信息。结论。牙科聚合物网络已显示出易受吸湿和水解作用的影响,具体取决于其化学和结构。尽管许多研究人员暗示降低使用寿命的潜力,但这些影响对聚合物修复剂临床性能的重要性仍然未知。意义。尽管这些材料的物理和机械性能可能会因溶剂吸收和组分洗脱的影响而发生显着变化,但最令人担忧的是未反应组分的短期释放和口腔中降解产物的长期洗脱牙洞,在修复性材料开发过程中应同时考虑这两种情况。

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