Developing Bioactive Dental Resins for Restorative Dentistry.

IF 5.7 1区 医学 Q1 DENTISTRY, ORAL SURGERY & MEDICINE Journal of Dental Research Pub Date : 2023-10-01 Epub Date: 2023-08-09 DOI:10.1177/00220345231182357
M A S Melo, I M Garcia, L Mokeem, M D Weir, H H K Xu, C Montoya, S Orrego
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Abstract

Despite its reputation as the most widely used restorative dental material currently, resin-based materials have acknowledged shortcomings. As most systematic survival studies of resin composites and dental adhesives indicate, secondary caries is the foremost reason for resin-based restoration failure and life span reduction. In subjects with high caries risk, the microbial community dominated by acidogenic and acid-tolerant bacteria triggers acid-induced deterioration of the bonding interface and/or bulk material and mineral loss around the restorations. In addition, resin-based materials undergo biodegradation in the oral cavity. As a result, the past decades have seen exponential growth in developing restorative dental materials for antimicrobial applications addressing secondary caries prevention and progression. Currently, the main challenge of bioactive resin development is the identification of efficient and safe anticaries agents that are detrimental free to final material properties and show satisfactory long-term performance and favorable clinical translation. This review centers on the continuous efforts to formulate novel bioactive resins employing 1 or multiple agents to enhance the antibiofilm efficacy or achieve multiple functionalities, such as remineralization and antimicrobial activity antidegradation. We present a comprehensive synthesis of the constraints and challenges encountered in the formulation process, the clinical performance-related prerequisites, the materials' intended applicability, and the current advancements in clinical implementation. Moreover, we identify crucial vulnerabilities that arise during the development of dental materials, including particle aggregation, alterations in color, susceptibility to hydrolysis, and loss of physicomechanical core properties of the targeted materials.

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开发用于修复性牙科的生物活性牙科树脂。
尽管树脂基材料被誉为目前使用最广泛的修复性牙科材料,但它也承认存在缺陷。正如大多数树脂复合材料和牙科粘合剂的系统生存研究所表明的那样,继发性龋齿是树脂基修复失败和寿命缩短的首要原因。在高龋齿风险的受试者中,由产酸和耐酸细菌主导的微生物群落会引发酸诱导的结合界面退化和/或修复体周围的大块材料和矿物质损失。此外,树脂基材料在口腔中进行生物降解。因此,在过去的几十年里,开发用于抗菌应用的修复性牙科材料的数量呈指数级增长,以预防和发展继发性龋齿。目前,生物活性树脂开发的主要挑战是识别高效安全的防龋剂,这些防龋剂对最终材料性能无害,并显示出令人满意的长期性能和良好的临床转化。这篇综述的重点是不断努力开发新的生物活性树脂,使用1种或多种试剂来提高抗菌膜的功效或实现多种功能,如再矿化和抗菌活性抗降解。我们对配方过程中遇到的限制和挑战、临床性能相关的先决条件、材料的预期适用性以及临床实施的当前进展进行了全面综合。此外,我们确定了牙科材料开发过程中出现的关键脆弱性,包括颗粒聚集、颜色变化、水解敏感性以及目标材料物理机械核心性能的损失。
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来源期刊
Journal of Dental Research
Journal of Dental Research 医学-牙科与口腔外科
CiteScore
15.30
自引率
3.90%
发文量
155
审稿时长
3-8 weeks
期刊介绍: The Journal of Dental Research (JDR) is a peer-reviewed scientific journal committed to sharing new knowledge and information on all sciences related to dentistry and the oral cavity, covering health and disease. With monthly publications, JDR ensures timely communication of the latest research to the oral and dental community.
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