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玻璃离子水门汀的化学性质:综述

Chemistry of glass-ionomer cements: a review.

作者信息

Nicholson J W

机构信息

Dental Biomaterials Department, The Dental Institute, King's College School of Medicine and Dentistry, London, UK.

出版信息

Biomaterials. 1998 Mar;19(6):485-94. doi: 10.1016/s0142-9612(97)00128-2.

Abstract

Studies of the setting of glass-ionomer cements have been carried out for over twenty years, and there is now a considerable body of information concerning the steps that lead to the conversion of a freshly mixed cement paste into a solid, durable dental restorative. This paper reviews these studies, paying particular attention to more recent work. The conclusion is that glass-ionomers consist of interpenetrating networks of inorganic and organic components forming a matrix in which particles of unreacted glass are embedded. However, there remain uncertainties over aspects of the setting chemistry, for example over the role of (+)-tartaric acid in the setting reaction, and over the nature of the fluoride species which form during the reaction. The chemistry of resin-modified glass-ionomers is also discussed and shown to be more complex than that of the simple cements. The presence of the resin component slows down the ionic cure reaction of the conventional cement, and leads to both a significant exotherm and a set material capable of absorbing water reversibly. The paper concludes that the microstructure of the set cement depends completely on chemical composition and the kinetics of the setting process, and that an understanding of the setting chemistry of these materials is thus important for optimal clinical use.

摘要

对玻璃离子水门汀凝固过程的研究已经进行了二十多年,现在已有大量关于新调拌的水泥浆体转化为坚固耐用的牙科修复体所涉及步骤的信息。本文回顾了这些研究,尤其关注了近期的工作。结论是,玻璃离子体由无机和有机成分的互穿网络组成,形成一个基质,未反应的玻璃颗粒嵌入其中。然而,凝固化学的某些方面仍存在不确定性,例如(+)-酒石酸在凝固反应中的作用,以及反应过程中形成的氟化物种类的性质。本文还讨论了树脂改性玻璃离子体的化学性质,并表明其比简单水门汀更为复杂。树脂成分的存在减缓了传统水门汀的离子固化反应,并导致显著的放热现象以及固化材料能够可逆地吸收水分。本文得出结论,固化水门汀的微观结构完全取决于化学成分和凝固过程的动力学,因此了解这些材料的凝固化学对于最佳临床应用至关重要。

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