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一种通过无定形多聚磷酸盐微粒改善牙齿敏感症的仿生方法。

A biomimetic approach to ameliorate dental hypersensitivity by amorphous polyphosphate microparticles.

机构信息

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

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

出版信息

Dent Mater. 2016 Jun;32(6):775-83. doi: 10.1016/j.dental.2016.03.027. Epub 2016 Apr 6.

Abstract

OBJECTIVE

Dental hypersensitivity has become one of the most common and most costly diseases in the world, even though those maladies are very rarely life threatening. Using amorphous microparticles, fabricated from the natural polymer (polyphosphate), we intend to reseal the dentinal tubules exposed and reduce by that the hypersensitivity.

METHODS

Amorphous microparticles (termed aCa-polyP-MP) were prepared from Na-polyphosphate (polyP) and CaCl2, then incubated with human teeth. The potential of the microparticles to plug the dentinal tubules was determined by microscopic and spectroscopic techniques.

RESULTS

We demonstrate that, in contrast to polyP, the aCa-polyP-MP efficiently reseal dentinal tubules exposed at the tooth surface. Scanning electron microscopical (SEM) and energy dispersive X-ray spectroscopic (EDX) studies showed that the tooth cement and dentin surfaces, incubated with aCa-polyP-MP, form a nearly homogenous, approximately 50-μm thick solid polyP layer on the tooth cement and dentin surfaces, while no coating on the tooth surface, incubated with Na-polyP [Ca(2+)], was observed. Determination of the mechanical properties of the polyP coating revealed a Martens hardness of 3.85±0.64GPa and a reduced elastic modulus of 94.72±8.54GPa already after a 3h exposure to the aCa-polyP-MP, which become close to those of the natural enamel (4.33±0.69GPa and 101.61±8.52GPa, respectively) after prolonged incubation periods. In addition, aCa-polyP-MP turned out to display morphogenetic activity. Incubation of precursor odontoblasts cultures in the presence of aCa-polyP-MP resulted in a 7-fold increase of the steady-state-expression level of the gene encoding for the alkaline phosphatase (ALP) during a 7 d incubation period.

SIGNIFICANCE

Ca-polyP microparticles, consisting of the biocompatible natural polymer polyP, provide a potential sealing material for dentinal tubules on the tooth surface.

摘要

目的

牙本质过敏已成为世界上最常见和最昂贵的疾病之一,尽管这些疾病很少危及生命。我们使用由天然聚合物(多聚磷酸盐)制成的无定形微颗粒来封闭暴露的牙本质小管,从而降低过敏反应。

方法

从 Na-多聚磷酸盐(多聚磷酸盐)和 CaCl2 制备无定形微颗粒(称为 aCa-多聚磷酸盐-MP),然后与人类牙齿孵育。通过显微镜和光谱技术确定微颗粒堵塞牙本质小管的潜力。

结果

与多聚磷酸盐相比,我们证明 aCa-多聚磷酸盐-MP 能有效地封闭暴露在牙表面的牙本质小管。扫描电子显微镜(SEM)和能量色散 X 射线光谱(EDX)研究表明,用 aCa-多聚磷酸盐-MP 孵育的牙骨质和牙本质表面在牙骨质和牙本质表面形成一层近乎均匀的约 50μm 厚的固体多聚磷酸盐层,而用 Na-多聚磷酸盐[Ca(2+)]孵育的牙表面则没有观察到涂层。对多聚磷酸盐涂层的机械性能的测定表明,在用 aCa-多聚磷酸盐-MP 孵育 3 小时后,马氏体硬度为 3.85±0.64GPa,弹性模量降低为 94.72±8.54GPa,这与天然牙釉质的硬度(4.33±0.69GPa 和 101.61±8.52GPa)相近。在延长孵育时间后。此外,aCa-多聚磷酸盐-MP 表现出形态发生活性。在存在 aCa-多聚磷酸盐-MP 的情况下,对前体成牙本质细胞培养物进行孵育,导致碱性磷酸酶(ALP)基因的稳定表达水平在 7 天的孵育期间增加了 7 倍。

意义

由生物相容性天然聚合物多聚磷酸盐组成的 Ca-多聚磷酸盐微颗粒为牙本质小管提供了一种潜在的牙表面封闭材料。

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