[Study on the construction of a novel dentin remineralization system based on carboxylated polyamidoamine synergistic with magnesium ions].

Q4 Medicine
Q R Li, J D Long, K Q Yan, X M Huang, G F Ban, F F Xie, W X Chen
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引用次数: 0

Abstract

Objective: To explore the effect of carboxylated polyamidoamine (PAMAM-COOH) in combination with magnesium ions on the remineralization ability of amorphous calcium phosphate (ACP) in inducing remineralization of dentin collagen fibers in a 50% ethanol solution. Methods: Forty-five intact third molars extracted for impaction reasons were obtained from the College & Hospital of Stomatology, Guangxi Medical University. Two types of demineralized dentin specimens were prepared: ①Fully demineralized dentin (n=30), specimens were immersed in 17% ethylenediaminetetraacetic acid (EDTA) (pH=7.4) at room temperature for 14 days with daily solution refreshment; ②Partially demineralized dentin (n=15), specimens were treated with 37% phosphoric acid gel (Ultra-Etch, Ultradent) for 15 seconds followed by thorough rinsing with deionized water. Three remineralization groups were established for demineralized dentin treatment: ①Control group, 50% ethanol solution; ②ACMP group, 50% ethanol solution containing amorphous magnesium calcium phosphate (ACMP); ③PAMAM-COOH/ACMP group, 50% ethanol solution incorporating carboxylated polyamidoamine dendrimer-modified ACMP (PAMAM-COOH/ACMP). The chemical composition of remineralization solutions was analyzed by Fourier-transform infrared spectrum (FTIR). The morphology and particle size distribution of nanoparticles were characterized using transmission electron microscopy (TEM). The fully demineralized dentin specimens were treated with three different remineralization solutions (37 ℃ for 7 days) respectively. The mineralization of the dentin collagen fibers surface was observed using scanning electron microscopy (SEM) and the distribution of minerals inside and outside the collagen fibers was examined by using TEM. The partially demineralized dentin specimens were treated with fluorescence-labeled remineralization solutions (37 ℃ for 7 days) respectively, followed by analysis using confocal laser scanning microscopy (CLSM) to quantitatively evaluate the penetration depth of the mineralization agents. Results: FTIR analysis confirmed the presence of characteristic absorption peaks corresponding to phosphate (PO43-) groups, carbon-nitrogen bonds, and amide linkages in the PAMAM-COOH/ACMP nanocomposite. TEM observed that the PAMAM-COOH/ACMP nanoparticles exhibited an average particle size of (36.85±8.02) nm in an amorphous state. SEM observation indicates continuous mineral deposition on dentin collagen fibers in the PAMAM-COOH/ACMP group, while no mineral deposition in the control group and only minimal deposition in the ACMP group. TEM showed no mineral deposition inside or outside the collagen fibers in the control group, only external mineral deposition in the ACMP group, and high-density mineral deposition both inside and outside the fibers in the PAMAM-COOH/ACMP group. CLSM analysis revealed a statistically significant difference (P<0.05) in the depth of mineralized substances entering dentin tubules between ACMP group and PAMAM-COOH/ACMP group. Conclusions: The remineralization system of 50% ethanol solution incorporating PAMAM-COOH/ACMP successfully achieved the internal and external mineralization of demineralized dentin collagen fibers.

[基于羧化聚胺胺与镁离子协同作用的新型牙本质再矿化体系的构建研究]。
目的:探讨羧化聚酰胺胺(PAMAM-COOH)与镁离子复合对无定形磷酸钙(ACP)在50%乙醇溶液中诱导牙本质胶原纤维再矿化能力的影响。方法:选择广西医科大学口腔医学院附属附属医院因嵌塞原因拔除的完整第三磨牙45颗。制备两种脱矿牙本质标本:①完全脱矿牙本质标本30例,室温浸泡于17%乙二胺四乙酸(EDTA)溶液(pH=7.4)中,每天补液14 d;②部分脱矿牙本质(n=15),用37%磷酸凝胶(Ultra-Etch, Ultradent)处理15秒,然后用去离子水彻底冲洗。牙本质脱矿治疗设3个再矿化组:①对照组,50%乙醇溶液;②ACMP组,50%乙醇溶液含无定形磷酸钙镁(ACMP);③PAMAM-COOH/ACMP组,50%乙醇溶液中加入羧基化聚氨基胺树突状修饰的ACMP (PAMAM-COOH/ACMP)。利用傅里叶变换红外光谱(FTIR)分析了再矿化液的化学成分。利用透射电镜(TEM)对纳米颗粒的形貌和粒径分布进行了表征。完全脱矿的牙本质标本分别用3种不同的再矿化溶液(37℃,7 d)处理。用扫描电镜(SEM)观察了牙本质胶原纤维表面矿化情况,用透射电镜(TEM)观察了胶原纤维内外矿物的分布。部分脱矿的牙本质标本分别用荧光标记的再矿化溶液(37℃)处理7天,然后用共聚焦激光扫描显微镜(CLSM)分析,定量评价矿化剂的渗透深度。结果:FTIR分析证实PAMAM-COOH/ACMP纳米复合材料中存在与磷酸(PO43-)基团、碳氮键和酰胺键对应的特征吸收峰。透射电镜观察到PAMAM-COOH/ACMP纳米颗粒在无定形状态下的平均粒径为(36.85±8.02)nm。SEM观察显示PAMAM-COOH/ACMP组牙本质胶原纤维上有持续的矿物沉积,而对照组无矿物沉积,ACMP组仅有少量沉积。透射电镜显示,对照组胶原纤维内外均未见矿物沉积,ACMP组仅可见外部矿物沉积,PAMAM-COOH/ACMP组纤维内外均有高密度矿物沉积。结论:含PAMAM-COOH/ACMP的50%乙醇溶液矿化体系成功实现了脱矿牙本质胶原纤维的内外矿化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
中华口腔医学杂志
中华口腔医学杂志 Medicine-Medicine (all)
CiteScore
0.90
自引率
0.00%
发文量
9692
期刊介绍: Founded in August 1953, Chinese Journal of Stomatology is a monthly academic journal of stomatology published publicly at home and abroad, sponsored by the Chinese Medical Association and co-sponsored by the Chinese Stomatology Association. It mainly reports the leading scientific research results and clinical diagnosis and treatment experience in the field of oral medicine, as well as the basic theoretical research that has a guiding role in oral clinical practice and is closely combined with oral clinical practice. Chinese Journal of Over the years, Stomatology has been published in Medline, Scopus database, Toxicology Abstracts Database, Chemical Abstracts Database, American Cancer database, Russian Abstracts database, China Core Journal of Science and Technology, Peking University Core Journal, CSCD and other more than 20 important journals at home and abroad Physical medicine database and retrieval system included.
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