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定制单体以克服当前牙科树脂复合材料的缺点——综述

Tailoring the monomers to overcome the shortcomings of current dental resin composites - review.

作者信息

He Jingwei, Lassila Lippo, Garoushi Sufyan, Vallittu Pekka

机构信息

College of Materials Science and Engineering, South China University of Technology, Guangzhou, China.

Department of Biomaterials Science and Turku Clinical Biomaterials Center-TCBC, Institute of Dentistry, University of Turku, Turku, Finland.

出版信息

Biomater Investig Dent. 2023 Apr 20;10(1):2191621. doi: 10.1080/26415275.2023.2191621. eCollection 2023.

Abstract

Dental resin composites (DRCs) have become the first choice among different restorative materials for direct anterior and posterior restorations in the clinic. Though the properties of DRCs have been improved greatly in recent years, they still have several shortcomings, such as volumetric shrinkage and shrinkage stress, biofilm development, lack of radio-opacity for some specific DRCs, and estrogenicity, which need to be overcome. The resin matrix, composed of different monomers, constitutes the continuous phase and determine the performance of DRCs. Thus, the chemical structure of the monomers plays an important role in modifying the properties of DRCs. Numerous researchers have taken to design and develop novel monomers with specific functions for the purpose of fulfilling the needs in dentistry. In this review, the development of monomers in DRCs were highlighted, especially focusing on strategies aimed at reducing volumetric shrinkage and shrinkage stress, endowing bacteriocidal and antibacterial adhesion activities as well as protein-repelling activity, increasing radio-opacity, and replacing Bis-GMA. The influences of these novel monomers on the properties of DRCs were also discussed.

摘要

牙科树脂复合材料(DRCs)已成为临床上用于直接进行前牙和后牙修复的不同修复材料中的首选。尽管近年来DRCs的性能有了很大提高,但它们仍存在一些缺点,如体积收缩和收缩应力、生物膜形成、某些特定DRCs缺乏射线不透性以及雌激素活性等,这些都需要克服。由不同单体组成的树脂基质构成连续相并决定DRCs的性能。因此,单体的化学结构在改变DRCs的性能方面起着重要作用。许多研究人员已着手设计和开发具有特定功能的新型单体,以满足牙科领域的需求。在这篇综述中,重点介绍了DRCs中单体的发展,尤其关注旨在减少体积收缩和收缩应力、赋予杀菌和抗菌粘附活性以及抗蛋白粘附活性、增加射线不透性和替代双酚A甘油醚甲基丙烯酸酯(Bis-GMA)的策略。还讨论了这些新型单体对DRCs性能的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/53a6/10120559/d353318d8866/IABO_A_2191621_F0001_B.jpg

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