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当前牙髓盖髓材料的趋势和未来展望:系统评价。

Current trends and future perspectives of dental pulp capping materials: A systematic review.

机构信息

DDS, Post-graduate Student, Department of Restorative Dentistry, Faculty of Dentistry, Federal University of Pelotas, RS, Brazil.

Undergraduate Student, Department of Restorative Dentistry, Faculty of Dentistry, Federal University of Pelotas, RS, Brazil.

出版信息

J Biomed Mater Res B Appl Biomater. 2018 Apr;106(3):1358-1368. doi: 10.1002/jbm.b.33934. Epub 2017 May 31.

Abstract

To systematically review the literature to analyze the current trends and future perspectives of dental pulp capping materials through an analysis of scientific and technological data. This study is reported in accordance with the PRISMA Statement. Nine databases were screened: PubMed (MedLine), Lilacs, IBECS, BBO, Web of Science, Scopus, SciELO, Google Scholar, and The Cochrane Library. Additionally, the following patent applications were searched online in Questel Orbit (Paris, France), USPTO, EPO, JPO, INPI, and Patentscope databases. A total of 716 papers and 83 patents were included. Calcium hydroxide was the main type of material studied, especially for direct pulp capping, followed by MTA. Patents related to adhesives or resins increased from 1998 e 2008, while in the last years, a major increase was observed in bioactive materials (containing bioactive proteins), materials derived from MTA (calcium silicate, calcium phosphate and calcium aluminate-based cements) and MTA. It was possible to obtain a scientific and technological overview of pulp capping materials. MTA has shown favorable results in vital pulp therapy that seem to surpass the disadvantages of calcium hydroxide. Recent advances in bioactive materials and those derived from MTA have shown promising results that could improve biomaterials used in vital pulp treatments. © 2017 Wiley Periodicals, Inc. J Biomed Mater Res Part B: Appl Biomater, 106B: 1358-1368, 2018.

摘要

为了通过分析科学技术数据来系统地回顾文献,以分析牙髓盖髓材料的当前趋势和未来展望。本研究是按照 PRISMA 声明报告的。筛选了 9 个数据库:PubMed(MedLine)、Lilacs、IBECS、BBO、Web of Science、Scopus、SciELO、Google Scholar 和 The Cochrane Library。此外,还在法国巴黎的 Questel Orbit 在线搜索了以下专利申请:USPTO、EPO、JPO、INPI 和 Patentscope 数据库。共纳入 716 篇论文和 83 项专利。氢氧化钙是研究的主要材料类型,特别是用于直接盖髓,其次是 MTA。与粘合剂或树脂相关的专利自 1998 年至 2008 年有所增加,而在最近几年,生物活性材料(含有生物活性蛋白)、MTA 衍生材料(硅酸钙、磷酸钙和铝酸钙基水泥)和 MTA 的数量显著增加。本研究能够对牙髓盖髓材料进行科学技术综述。MTA 在活髓治疗中显示出良好的效果,似乎超过了氢氧化钙的缺点。生物活性材料和 MTA 衍生材料的最新进展显示出有希望的结果,这可能会改善用于活髓治疗的生物材料。© 2017 Wiley Periodicals, Inc. J 生物医学材料研究部分 B:应用生物材料,106B:1358-1368,2018。

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