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Hydroxypropylmethylcellulose as a film and hydrogel carrier for ACP nanoprecursors to deliver biomimetic mineralization

矿化(土壤科学) 聚天冬氨酸 化学 脱盐 无定形磷酸钙 牙本质 纳米颗粒 生物矿化 牙科 磷酸盐 化学工程 纳米技术 材料科学 有机化学 原材料 搪瓷漆 氮气 工程类 医学
作者
Zhe Wang,Zihuai Zhou,Jiayan Fan,Leiqing Zhang,Zhixin Zhang,Zhifang Wu,Ying Shi,Haiyan Zheng,Zhengyi Zhang,Ruikang Tang,Baiping Fu
出处
期刊:Journal of Nanobiotechnology [BioMed Central]
卷期号:19 (1) 被引量:24
标识
DOI:10.1186/s12951-021-01133-7
摘要

Abstract Demineralization of hard tooth tissues leads to dental caries, which cause health problems and economic burdens throughout the world. A biomimetic mineralization strategy is expected to reverse early dental caries. Commercially available anti-carious mineralizing products lead to inconclusive clinical results because they cannot continuously replenish the required calcium and phosphate resources. Herein, we prepared a mineralizing film consisting of hydroxypropylmethylcellulose (HPMC) and polyaspartic acid-stabilized amorphous calcium phosphate (PAsp-ACP) nanoparticles. HPMC which contains multiple hydroxyl groups is a film-forming material that can be desiccated to form a dry film. In a moist environment, this film gradually changes into a gel. HPMC was used as the carrier of PAsp-ACP nanoparticles to deliver biomimetic mineralization. Our results indicated that the hydroxyl and methoxyl groups of HPMC could assist the stability of PAsp-ACP nanoparticles and maintain their biomimetic mineralization activity. The results further demonstrated that the bioinspired mineralizing film induced the early mineralization of demineralized dentin after 24 h with increasing mineralization of the whole demineralized dentin (3–4 µm) after 72–96 h. Furthermore, these results were achieved without any cytotoxicity or mucosa irritation. Therefore, this mineralizing film shows promise for use in preventive dentistry due to its efficient mineralization capability. Graphical Abstract
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