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多功能牙科复合材料,具有压电纳米填料,可实现抗菌和矿化的协同作用。

Multifunctional Dental Composite with Piezoelectric Nanofillers for Combined Antibacterial and Mineralization Effects.

机构信息

Department of Oral Health Sciences, Kornberg School of Dentistry, Temple University, Philadelphia, Pennsylvania 19140, United States.

Bioengineering Research Group (GIB), Department of Mechanical Engineering, Universidad EAFIT, Medellin 050022, Colombia.

出版信息

ACS Appl Mater Interfaces. 2021 Sep 22;13(37):43868-43879. doi: 10.1021/acsami.1c06331. Epub 2021 Sep 8.

Abstract

After nearly seven decades of development, dental composite restorations continue to show limited clinical service. The triggering point for restoration failure is the degradation of the bond at the tooth-biomaterial interface from chemical, biological, and mechanical sources. Oral biofilms form at the bonded interfaces, producing enzymes and acids that demineralize hard tissues and damage the composite. Removing bacteria from bonded interfaces and remineralizing marginal gaps will increase restorations' clinical service. To address this need, we propose for the first time the use of piezoelectric nanoparticles of barium titanate (BaTiO) as a multifunctional bioactive filler in dental resin composites, offering combined antibacterial and (re)mineralization effects. In this work, we developed and characterized the properties of dental piezoelectric resin composites, including the degree of conversion and mechanical and physical properties, for restorative applications. Moreover, we evaluated the antibacterial and mineralization responses of piezoelectric composites . We observed a significant reduction in biofilm growth (up to 90%) and the formation of thick and dense layers of calcium phosphate minerals in piezoelectric composites compared to control groups. The antibacterial mechanism was also revealed. Additionally, we developed a unique approach evaluating the bond strength of dentin-adhesive-composite interfaces subjected to simultaneous attacks from bacteria and cyclic mechanical loading operating in synergy. Our innovative bioactive multifunctional composite provides an ideal technology for restorative applications using a single filler with combined long-lasting nonrechargeable antibacterial/remineralization effects.

摘要

经过近 70 年的发展,牙科复合修复体的临床应用仍然存在一定的局限性。修复体失效的触发点是牙-生物材料界面的结合从化学、生物和机械来源的退化。口腔生物膜在结合界面形成,产生的酶和酸会使硬组织脱矿并损坏复合材料。从结合界面去除细菌并使边缘间隙再矿化将增加修复体的临床应用。为了解决这一需求,我们首次提出将钛酸钡(BaTiO)的压电纳米粒子用作牙科树脂复合材料中的多功能生物活性填料,提供联合抗菌和(再)矿化作用。在这项工作中,我们开发并表征了牙科压电树脂复合材料的性能,包括转化率以及机械和物理性能,以满足修复应用的需求。此外,我们评估了压电复合材料的抗菌和矿化响应。与对照组相比,我们观察到在压电复合材料中生物膜的生长显著减少(高达 90%),并且形成了厚而致密的磷酸钙矿物质层。抗菌机制也得到了揭示。此外,我们开发了一种独特的方法来评估同时受到细菌和循环机械负载协同作用攻击的牙本质-胶粘剂-复合材料界面的结合强度。我们的创新生物活性多功能复合材料为使用单一填料提供了理想的技术,具有联合持久的不可充电抗菌/再矿化作用。

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