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用于修复牙科中高性能的聚合锌掺杂纳米粒子。

Polymeric zinc-doped nanoparticles for high performance in restorative dentistry.

机构信息

University of Granada, Faculty of Dentistry, Dental Materials Section. Colegio Máximo de Cartuja s/n, Granada, 18071, Spain.

University of Granada, Faculty of Dentistry, Dental Materials Section. Colegio Máximo de Cartuja s/n, Granada, 18071, Spain.

出版信息

J Dent. 2021 Apr;107:103616. doi: 10.1016/j.jdent.2021.103616. Epub 2021 Feb 23.

Abstract

OBJECTIVES

The aim was to state the different applications and the effectiveness of polymeric zinc-doped nanoparticles to achieve dentin remineralization.

DATA, SOURCES AND STUDY SELECTION: Literature search was conducted using electronic databases, such as PubMed, MEDLINE, DIMDI, Embase, Scopus and Web of Science. A narrative exploratory review was undertaken.

CONCLUSIONS

Polymeric nanospheres (NPs) were efficiently loaded with zinc. NPs sequestered calcium and phosphate in the presence of silicon, and remained effectively embedded at the hybrid layer. NPs incorporation did not alter bond strength and inhibited MMP-mediated dentin collagen degradation. Zn-loaded NPs remineralized the hybrid layer inducing a generalized low-carbonate substitute apatite precipitation, chemically crystalline with some amorphous components, and an increase in mechanical properties was also promoted. Viscoelastic analysis determined that dentin infiltrated with Zn-NPs released the stress by breaking the resin-dentin interface and creating specific mineral formations in response to the energy dissipation. Bacteria were scarcely encountered at the resin-dentin interface. The combined antibacterial and remineralizing effects, when Zn-NPs were applied, reduced biofilm formation. Zn-NPs application at both cervical and radicular dentin attained the lowest microleakage and also promoted durable sealing ability. The new zinc-based salt minerals generated covered the dentin surface totally occluding cracks, porosities and dentinal tubules.

CLINICAL SIGNIFICANCE

Zinc-doped NPs are proposed for effective dentin remineralization and tubular occlusion. This offers new strategies for regeneration of eroded cervical dentin, effective treatment of dentin hypersensitivity and in endodontically treated teeth previous to the canal filling. Zn-NPs also do reduce biofilm formation due to antibacterial properties.

摘要

目的

旨在阐述聚合锌掺杂纳米粒子在实现牙本质再矿化方面的不同应用和效果。

数据来源和研究选择

使用电子数据库(如 PubMed、MEDLINE、DIMDI、Embase、Scopus 和 Web of Science)进行文献检索。进行了叙述性探索性综述。

结论

聚合纳米球(NPs)有效地负载了锌。NPs 在存在硅的情况下螯合钙和磷酸盐,并有效地嵌入混合层中。NPs 的掺入不会改变黏结强度,并抑制 MMP 介导的牙本质胶原降解。负载锌的 NPs 再矿化了混合层,诱导广泛的低碳替代磷灰石沉淀,具有一些无定形成分的化学结晶,并促进了机械性能的提高。黏弹性分析确定,用 Zn-NPs 渗透的牙本质通过破坏树脂-牙本质界面并形成特定的矿物质来释放能量耗散产生的应力。在树脂-牙本质界面几乎没有发现细菌。当应用 Zn-NPs 时,联合的抗菌和再矿化作用减少了生物膜的形成。在颈牙本质和根牙本质上应用 Zn-NPs 可达到最低的微渗漏,并促进持久的密封能力。新生成的锌基盐矿物质完全覆盖牙本质表面,封闭了裂纹、孔隙和牙本质小管。

临床意义

锌掺杂 NPs 被提议用于有效的牙本质再矿化和管腔闭塞。这为侵蚀性颈牙本质的再生、牙本质敏感症的有效治疗以及根管填充前的牙髓治疗牙齿提供了新的策略。由于具有抗菌特性,Zn-NPs 还可以减少生物膜的形成。

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