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一种通过无定形多磷酸盐修复牙釉质裂纹/龋损并封闭牙本质小管的新型仿生方法。

A Novel Biomimetic Approach to Repair Enamel Cracks/Carious Damages and to Reseal Dentinal Tubules by Amorphous Polyphosphate.

作者信息

Müller Werner E G, Ackermann Maximilian, Neufurth Meik, Tolba Emad, Wang Shunfeng, Feng Qingling, Schröder Heinz C, Wang Xiaohong

机构信息

European Research Council-Advanced Investigator Grant Research Group at the Institute for Physiological Chemistry, University Medical Center of the Johannes Gutenberg University, Duesbergweg 6, D-55128 Mainz, Germany.

Institute of Functional and Clinical Anatomy, University Medical Center of the Johannes Gutenberg University,Johann Joachim Becher Weg 13, D-55099 Mainz, Germany.

出版信息

Polymers (Basel). 2017 Mar 25;9(4):120. doi: 10.3390/polym9040120.

Abstract

Based on natural principles, we developed a novel toothpaste, containing morphogenetically active amorphous calcium polyphosphate (polyP) microparticles which are enriched with retinyl acetate ("a-polyP/RA-MP"). The spherical microparticles (average size, 550 ± 120 nm), prepared by co-precipitating soluble Na-polyP with calcium chloride and supplemented with retinyl acetate, were incorporated into a base toothpaste at a final concentration of 1% or 10%. The "a-polyP/RA-MP" ingredient significantly enhanced the stimulatory effect of the toothpaste on the growth of human mesenchymal stem cells (MSC). This increase was paralleled by an upregulation of the MSC marker genes for osteoblast differentiation, collagen type I and alkaline phosphatase. In addition, polyP, applied as Zn-polyP microparticles ("Zn-a-polyP-MP"), showed a distinct inhibitory effect on growth of Streptococcus mutans, in contrast to a toothpaste containing the broad-spectrum antibiotic triclosan that only marginally inhibits this cariogenic bacterium. Moreover, we demonstrate that the "a-polyP/RA-MP"-containing toothpaste efficiently repairs cracks/fissures in the enamel and dental regions and reseals dentinal tubules, already after a five-day treatment (brushing) of teeth as examined by SEM (scanning electron microscopy) and semi-quantitative EDX (energy-dispersive X-ray spectroscopy). The occlusion of the dentin cracks by the microparticles turned out to be stable and resistant against short-time high power sonication. Our results demonstrate that the novel toothpaste prepared here, containing amorphous polyP microparticles enriched with retinyl acetate, is particularly suitable for prevention/repair of (cariogenic) damages of tooth enamel/dentin and for treatment of dental hypersensitivity. While the polyP microparticles function as a sealant for dentinal damages and inducer of remineralization processes, the retinyl acetate acts as a regenerative stimulus for collagen gene expression in cells of the surrounding tissue, the periodontium.

摘要

基于自然原理,我们研发了一种新型牙膏,其含有具有形态发生活性的无定形聚磷酸钙(polyP)微粒,这些微粒富含醋酸视黄酯(“a-polyP/RA-MP”)。通过将可溶性的Na-polyP与氯化钙共沉淀并添加醋酸视黄酯制备的球形微粒(平均尺寸为550±120nm),以1%或10%的终浓度加入到基础牙膏中。“a-polyP/RA-MP”成分显著增强了牙膏对人间充质干细胞(MSC)生长的刺激作用。这种增加与成骨细胞分化的MSC标记基因、I型胶原和碱性磷酸酶的上调相平行。此外,以Zn-polyP微粒(“Zn-a-polyP-MP”)形式应用的polyP对变形链球菌的生长表现出明显的抑制作用,与之形成对比的是,含有广谱抗生素三氯生的牙膏仅对这种致龋细菌有轻微抑制作用。此外,我们证明,经扫描电子显微镜(SEM)和半定量能量色散X射线光谱(EDX)检测,在对牙齿进行为期五天的治疗(刷牙)后,含“a-polyP/RA-MP”的牙膏能有效修复牙釉质和牙质区域的裂纹/裂隙,并封闭牙本质小管。微粒对牙本质裂纹的封闭结果显示是稳定的,且能抵抗短时间高功率超声处理。我们的结果表明,此处制备的含富含醋酸视黄酯的无定形polyP微粒的新型牙膏特别适用于预防/修复牙釉质/牙本质的(致龋)损伤以及治疗牙齿过敏。虽然polyP微粒充当牙本质损伤的密封剂和再矿化过程的诱导剂,但醋酸视黄酯作为周围组织即牙周组织细胞中胶原基因表达的再生刺激物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7292/6432492/830d9868d606/polymers-09-00120-g001.jpg

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