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纳米氟磷灰石水凝胶治疗牙本质过敏症:物理化学性质及氟释放研究

Nanofluorapatite Hydrogels in the Treatment of Dentin Hypersensitivity: A Study of Physiochemical Properties and Fluoride Release.

作者信息

Wiglusz Katarzyna, Dobrzynski Maciej, Gutbier Martina, Wiglusz Rafal J

机构信息

Department of Basic Chemical Sciences, Faculty of Pharmacy, Wroclaw Medical University, Borowska 211 A, 50566 Wroclaw, Poland.

Department of Pediatric Dentistry and Preclinical Dentistry, Faculty of Dentistry, Wroclaw Medical University, Krakowska 26, 50425 Wroclaw, Poland.

出版信息

Gels. 2023 Mar 25;9(4):271. doi: 10.3390/gels9040271.

Abstract

The aim of this work was to prepare a new hydrogel based on nanohydroxyapatite (nFAP, 10% ) and fluorides (4% ), both of which are used as sources of fluoride ions in the treatment of dentin hypersensitivity, and to characterize its physicochemical properties. The release of fluoride ions from 3 gels (G-F, G-F-nFAP, and G-nFAP gel) was controlled in Fusayama-Meyer artificial saliva at pH 4.5, 6.6, and 8.0. The properties of the formulations were determined by an analysis of viscosity, a shear rate test, a swelling study, and gel aging. Various methods, i.e., FT-IR spectroscopy, UV-VIS spectroscopy, and thermogravimetric, electrochemical, and rheological analysis, were used for the experiment. The profiles of fluoride release indicate that the amount of fluoride ions released increases with a decrease in the pH value. The low pH value facilitated water absorption by the hydrogel, which was also confirmed by the swelling test, and it promoted the exchange of ions with the surrounding environment. Under conditions similar to physiological conditions (at pH 6.6), the amounts of fluorides released into artificial saliva were approximately 250 µg/cm and 300 µg/cm for the G-F-nFAP hydrogel and G-F hydrogel, respectively. The aging study and properties of the gels showed a loosening of the gel network structure. The Casson rheological model was used to assess the rheological properties of the non-Newtonian fluids. Hydrogels consisting of nanohydroxyapatite and sodium fluoride are promising biomaterials in the prevention and management of the dentin hypersensitivity.

摘要

这项工作的目的是制备一种基于纳米羟基磷灰石(nFAP,10%)和氟化物(4%)的新型水凝胶,这两种物质在治疗牙本质过敏症时均用作氟离子源,并对其物理化学性质进行表征。在pH值为4.5、6.6和8.0的Fusayama-Meyer人工唾液中控制3种凝胶(G-F、G-F-nFAP和G-nFAP凝胶)中氟离子的释放。通过粘度分析、剪切速率测试、溶胀研究和凝胶老化来确定制剂的性质。实验采用了各种方法,即傅里叶变换红外光谱法、紫外可见光谱法以及热重分析、电化学分析和流变学分析。氟化物释放曲线表明,释放的氟离子量随pH值的降低而增加。低pH值促进了水凝胶对水的吸收,溶胀试验也证实了这一点,并且它促进了离子与周围环境的交换。在类似于生理条件(pH 6.6)的条件下,G-F-nFAP水凝胶和G-F水凝胶释放到人工唾液中的氟化物量分别约为250 µg/cm和300 µg/cm。凝胶的老化研究和性质表明凝胶网络结构有所松弛。采用Casson流变模型评估非牛顿流体的流变性质。由纳米羟基磷灰石和氟化钠组成的水凝胶是预防和治疗牙本质过敏症的有前途的生物材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7a2a/10137577/559e93ba9f19/gels-09-00271-g001.jpg

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