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牙科材料和制剂的物理化学及生物学特性:综述。

Physicochemical and biological properties of dental materials and formulations with silica nanoparticles: A narrative review.

机构信息

Faculdade de Odontologia de Piracicaba, Universidade Estadual de Campinas, Piracicaba, SP, Brazil.

Faculdade São Leopoldo Mandic, Campinas, SP, Brazil.

出版信息

Dent Mater. 2024 Nov;40(11):1729-1741. doi: 10.1016/j.dental.2024.07.028. Epub 2024 Aug 7.

Abstract

OBJECTIVE

Silica nanoparticles (SNPs) have been extensively studied and used in different dental applications to promote improved physicochemical properties, high substance loading efficiency, in addition to sustained delivery of substances for therapeutic or preventive purposes. Therefore, this study aimed to review the SNPs applications in nanomaterials and nanoformulations in dentistry, discussing their effect on physicochemical properties, biocompatibility and ability to nanocarry bioactive substances.

DATA RESOURCES

Literature searches were conducted on PubMed, Web of Science, and Scopus databases to identify studies examining the physicochemical and biological properties of dental materials and formulations containing SNPs. Data extraction was performed by one reviewer and verified by another STUDY SELECTION: A total of 50 were reviewed. In vitro studies reveal that SNPs improved the general properties of dental materials and formulations, such as microhardness, fracture toughness, flexural strength, elastic modulus and surface roughness, in addition to acting as efficient nanocarriers of substances, such as antimicrobial, osteogenic and remineralizing substances, and showed biocompatibility CONCLUSIONS: SNPs are biocompatible, improve properties of dental materials and serve as effective carriers for bioactive substances CLINICAL SIGNIFICANCE: Overall, SNPs are a promising drug delivery system that can improve dental materials biological and physicochemical and aesthetic properties, increasing their longevity and clinical performance. However, more studies are needed to elucidate SNPs short- and long-term effects in the oral cavity, mainly on in vivo and clinical studies, to prove their effectiveness and safety.

摘要

目的

硅纳米颗粒(SNPs)已在不同的牙科应用中得到广泛研究和应用,以提高物理化学性质、高物质负载效率,并持续输送物质用于治疗或预防目的。因此,本研究旨在综述 SNPs 在纳米材料和纳米配方在牙科中的应用,讨论它们对物理化学性质、生物相容性和纳米载运生物活性物质的能力的影响。

数据资源

在 PubMed、Web of Science 和 Scopus 数据库中进行文献检索,以确定研究牙科材料和含有 SNPs 的配方的物理化学和生物学特性的研究。数据提取由一名审查员进行,并由另一名审查员验证。

研究选择

共审查了 50 项研究。体外研究表明,SNPs 改善了牙科材料和制剂的一般性质,如显微硬度、断裂韧性、弯曲强度、弹性模量和表面粗糙度,此外还作为抗菌、成骨和再矿化物质等物质的有效纳米载体,具有生物相容性。

结论

SNPs 具有生物相容性,可改善牙科材料的性能,并可作为生物活性物质的有效载体。

临床意义

总体而言,SNPs 是一种有前途的药物输送系统,可以提高牙科材料的生物、物理化学和美学性能,增加其寿命和临床性能。然而,需要更多的研究来阐明 SNPs 在口腔中的短期和长期影响,特别是在体内和临床研究中,以证明其有效性和安全性。

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