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载表没食子儿茶素聚合物微球对黏结系统理化性能的影响。

Effect of Polymeric Microparticles Loaded With Catechin on the Physicochemical Properties of an Adhesive System.

出版信息

Oper Dent. 2019 Jul/Aug;44(4):E202-E211. doi: 10.2341/18-112-L. Epub 2019 Mar 8.

Abstract

The objective of this study was to synthesize and characterize epigallocatechin-3-gallate (EGCG)-loaded/poly(D-L lactide-co-glycolide) acid (PLGA) microparticles, evaluate their effects on degree of conversion and release assay of adhesives, and subsequently to examine the resin-dentin bond strength of two EGCG formulations (free EGCG or loaded into PLGA microparticles) applied as a pretreatment or incorporated into an adhesive system. The formulations were prepared according to a PLGA:EGCG ratio of 16:1 using the spray-drying technique. The size and polydispersity index were determined by light scattering in aqueous dispersion. The degree of conversion (%DC) and release assay were assessed by Fourier transform infrared spectroscopy and ultraviolet-visible spectrophotometer, respectively. Subsequently, 45 third molars were divided into five groups (n=9) according to the different EGCG application modes and prepared for bond strength testing in a universal testing machine. Results demonstrated no statistically significant difference among the DC means after the PLGA microparticles were loaded with EGCG. For the release assay, the 1.0% PLGA/EGCG group presented better results after being elected for use in the bond strength test. The resin-dentin bond strengths of the experimental groups after 12 months of water storage were significantly higher than in the control group. EGCG could improve the durability of the resin-dentin bond over time and promote a new era for adhesive dentistry with the concept of controlled release.

摘要

本研究的目的是合成和表征表没食子儿茶素没食子酸酯(EGCG)负载/聚(D-丙交酯-共-乙交酯)酸(PLGA)微球,评估其对胶粘剂转化率和释放试验的影响,随后检验两种 EGCG 制剂(游离 EGCG 或负载于 PLGA 微球中)作为预处理或加入胶粘剂体系后对牙本质粘结强度的影响。根据 PLGA:EGCG 为 16:1 的比例,采用喷雾干燥技术制备制剂。通过在水分散体中进行光散射来确定粒径和多分散指数。通过傅里叶变换红外光谱和紫外可见分光光度计分别评估转化率(%DC)和释放试验。随后,将 45 个第三磨牙根据不同的 EGCG 应用模式分为 5 组(n=9),在万能试验机上进行粘结强度测试。结果表明,负载 EGCG 后 PLGA 微球的 DC 均值之间无统计学差异。对于释放试验,选择 1.0%PLGA/EGCG 组进行粘结强度测试。经过 12 个月水储存后,实验组的树脂-牙本质粘结强度明显高于对照组。EGCG 可以随着时间的推移提高树脂-牙本质粘结的耐久性,并通过控制释放的概念为粘结牙科带来新时代。

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