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复合材料:组成、性能及临床应用。文献综述。

Composite materials: composition, properties and clinical applications. A literature review.

作者信息

Zimmerli Brigitte, Strub Matthias, Jeger Franziska, Stadler Oliver, Lussi Adrian

机构信息

Department of Preventive, Restorative and Pediatric Dentistry, School of Dental Medicine, University of Bern.

出版信息

Schweiz Monatsschr Zahnmed. 2010;120(11):972-86.

Abstract

Various composite materials are available today for direct restorative techniques. The most well-known materials are the hybrid composites. This technology, based on methacrylates and different types of filler coupled with silanes, has been continuously improved. Disadvantages such as polymerisation shrinkage, bacterial adhesion and side effects due to monomer release still remain. The aim of material development is to eliminate or at least reduce these negative factors by adapting the individual components of the material. With ormocers, the methacrylate has been partially replaced by an inorganic network. According to recent studies, the biocompatibility was not improved in all cases. The development of compomer was an attempt to combine the positive properties of glassionomers with composite technology. This has only partially succeeded, because the fluoride release is low. In an in-situ study, a caries protective effect could be shown at least in the first days following filling placement with concurrent extra-oral demineralisation. By replacing the chain-monomers in the composite matrix by ring-shaped molecules, a new approach to reduce polymerisation shrinkage was investigated. A new group of materials, the siloranes, has been developed. Siloranes are hydrophobic and need to be bonded to the dental hard tissue using a special adhesive system. Long-term clinical studies are still needed to prove the superiority of this new group of materials over modern hybrid composites.

摘要

如今有多种复合材料可用于直接修复技术。最知名的材料是混合复合材料。这项基于甲基丙烯酸酯以及不同类型与硅烷结合的填料的技术一直在不断改进。诸如聚合收缩、细菌黏附以及单体释放导致的副作用等缺点仍然存在。材料研发的目的是通过调整材料的各个成分来消除或至少减少这些负面因素。对于有机-无机杂化材料,甲基丙烯酸酯已部分被无机网络所取代。根据最近的研究,并非在所有情况下生物相容性都得到了改善。复合体的研发是将玻璃离子体的积极特性与复合技术相结合的一次尝试。但这只取得了部分成功,因为氟释放量较低。在一项原位研究中,至少在补牙后最初几天同时存在口外脱矿的情况下,显示出了防龋效果。通过用环状分子取代复合基质中的链状单体,研究了一种减少聚合收缩的新方法。已研发出一组新型材料——硅烷类材料。硅烷类材料具有疏水性,需要使用特殊的粘结系统粘结到牙齿硬组织上。仍需要长期临床研究来证明这组新型材料优于现代混合复合材料。

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