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采用茶树制备壳聚糖和氟化物功能化的银纳米粒子的绿色合成:表征和牙科应用。

Green synthesis of chitosan- and fluoride-functionalized silver nanoparticles using Camellia sinensis: Characterization and dental applications.

机构信息

Department of Operative Dentistry, School of Dentistry, University of Granada, Spain.

Department of Pediatric Dentistry, School of Dentistry, University of Granada, Spain.

出版信息

Int J Biol Macromol. 2024 May;268(Pt 1):131676. doi: 10.1016/j.ijbiomac.2024.131676. Epub 2024 Apr 17.

Abstract

The development of new biocompatible and eco-friendly materials is essential for the future of dental practice, especially for the management of dental caries. In this study, a novel and simple method was applied for the green synthesis of silver nanoparticles (AgNPs) from the aqueous extract of Camellia sinensis (WT) and functionalized with chitosan (CHS) and NaF. The effects of WT_AgNPs application on demineralized dentin were evaluated for potential dental applications. The WT_AgNPs showed molecular groups related to organic compounds, potentially acting as reducing and capping agents. All AgNPs presented spherical shapes with crystal sizes of approximately 20 nm. Forty human molars were assigned to control: sound (SD) and demineralised dentine (DD), and experimental groups: WT_AgNPs, WT_AgNPs_NaF, and WT_AgNPs_CHS. Then, the NPs were applied to DD to evaluate the chemical, crystallographic, and microstructural characteristics of treated-dentine. In addition, a three-point bending test was employed to assess mechanical response. The application of WT_AgNPs indicated a higher mineralisation degree and crystallites sizes of hydroxyapatite than the DD group. SEM images showed that WT_AgNPs presented different degrees of aggregation and distribution patterns. The dentine flexural strength was significantly increased in all WT_AgNPs. The application of WT_AgNPs demonstrated remineralising and strengthening potential on demineralised dentine.

摘要

新型生物相容性和环保材料的开发对于牙科实践的未来至关重要,特别是在龋齿管理方面。在本研究中,应用了一种新颖且简单的方法,从茶叶(WT)的水提物中绿色合成了银纳米颗粒(AgNPs),并用壳聚糖(CHS)和 NaF 对其进行功能化。评估了 WT_AgNPs 对脱矿质牙本质的应用效果,以期将其应用于牙科。WT_AgNPs 显示出与有机化合物相关的分子基团,可能作为还原和封端剂发挥作用。所有 AgNPs 均呈现出球形,晶体尺寸约为 20nm。将 40 个人类磨牙分为对照组:正常(SD)和脱矿质牙本质(DD),以及实验组:WT_AgNPs、WT_AgNPs_NaF 和 WT_AgNPs_CHS。然后,将 NPs 应用于 DD,以评估处理后牙本质的化学、结晶和微观结构特征。此外,还采用三点弯曲试验评估了机械响应。与 DD 组相比,WT_AgNPs 的应用表明具有更高的矿化程度和羟基磷灰石的晶粒尺寸。SEM 图像显示,WT_AgNPs 呈现出不同程度的聚集和分布模式。WT_AgNPs 的应用显著提高了牙本质的弯曲强度。WT_AgNPs 的应用显示出对脱矿质牙本质具有再矿化和增强潜力。

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