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对含新型预反应玻璃离子(PRG)填料的释氟牙科粘合剂发展的化学方法和超微形态学研究综述。

A review of chemical-approach and ultramorphological studies on the development of fluoride-releasing dental adhesives comprising new pre-reacted glass ionomer (PRG) fillers.

作者信息

Ikemura Kunio, Tay Franklin R, Endo Takeshi, Pashley David H

机构信息

Department of Research and Development, Shofu Inc., 11 Kamitakamatsu-cho, Fukuine, Higashiyama-ku, Kyoto 605-0983, Japan.

出版信息

Dent Mater J. 2008 May;27(3):315-39. doi: 10.4012/dmj.27.315.

Abstract

This paper reviews our recent studies on fluoride-releasing adhesives and the related studies in this field based on information from original research papers, reviews, and patent literatures. A revolutionary PRG (pre-reacted glass ionomer) filler technology--where fillers were prepared by the acid-base reaction of a fluoroaluminosilicate glass with polyalkenoic acid in water, was newly developed, and a new category as "Giomer" was introduced into the market. On fluoride release capability, SIMS examination revealed in vitro fluoride ion uptake by dentin substrate from the PRG fillers in dental adhesive. On bonding durability, it was found that the improved durability of resin-dentin bonds might be achieved not only via the strengthened dentin due to fluoride ion uptake from the PRG-Ca fillers, but also due to retention of relatively insoluble 4-AETCa formed around remnant apatite crystallites within the hybrid layer in 4-AET-containing self-etching adhesives. On ultramorphological study of the resin-dentin interface, TEM images of the PRG-Ca fillers revealed that the dehydrated hydrogel was barely distinguishable from normal glass fillers, if not for the concurrent presence of remnant, incompletely reacted glass cores. In conclusion, it was expected that uptake of fluoride ions with cariostatic effect from PRG-Ca fillers would endow dentin substrates with the benefit of secondary caries prevention, together with an effective and durable adhesion to dentin.

摘要

本文基于原始研究论文、综述及专利文献中的信息,回顾了我们近期关于含氟释放粘合剂的研究以及该领域的相关研究。一种革命性的预反应玻璃离子(PRG)填料技术被新开发出来,即通过氟铝硅酸盐玻璃与聚烯酸在水中的酸碱反应制备填料,并将一种名为“聚甲基丙烯酸甲酯/玻璃离子聚合物(Giomer)”的新类别推向市场。在氟释放能力方面,二次离子质谱(SIMS)检测显示,牙本质基质在体外可从牙科粘合剂中的PRG填料摄取氟离子。在粘结耐久性方面,发现树脂 - 牙本质粘结耐久性的提高不仅可能是由于从PRG - Ca填料摄取氟离子而强化了牙本质,还可能是由于在含4 - 乙酰氧基乙基三甲基氯化铵(4 - AET)的自酸蚀粘合剂的混合层中,围绕残余磷灰石微晶形成的相对不溶性4 - AETCa得以保留。在树脂 - 牙本质界面的超微形态学研究中,PRG - Ca填料的透射电子显微镜(TEM)图像显示,如果没有同时存在的残余未完全反应的玻璃芯,脱水水凝胶与普通玻璃填料几乎无法区分。总之,预计从PRG - Ca填料摄取具有防龋作用的氟离子将赋予牙本质基质预防继发龋的益处,以及对牙本质有效且持久的粘结力。

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