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含氟富釉原蛋白基质中磷灰石晶体生长的控制

Control of apatite crystal growth in a fluoride containing amelogenin-rich matrix.

作者信息

Iijima M, Moradian-Oldak J

机构信息

Dental Materials Sciences, Asahi University School of Dentistry, 1851-1 Hozumi, Mizuho-city, Gifu 501-0296, Japan.

出版信息

Biomaterials. 2005 May;26(13):1595-603. doi: 10.1016/j.biomaterials.2004.05.009.

Abstract

To study how crystal growth in dental enamel is controlled by the components of the extracellular matrix, we investigated the functional roles of amelogenins and fluoride ions in apatite formation occurring through an octacalcium phosphate (OCP)-precursor pathway. Using a cation selective membrane system as a model of tooth enamel formation, we evaluated the resulting mineral habit grown in native porcine amelogenins and fluoride ions. In the absence of amelogenin and in the presence of 1 or 2 ppm F, we obtained OCP + apatite and apatite, respectively. Without amelogenins, the crystals were hexagonal prisms and cones with diameters of approximately 100-200 nm. In the presence of 10% amelogenins and in the absence of fluoride, rod-like OCP with a diameter of 35 nm were obtained. Remarkably, a combination of amelogenin and fluoride created the formation of rod-like apatite crystals with dimensions similar to the former crystals. These observations indicate a cooperative role of amelogenin and fluoride in the regulation of habit, size orientation and phase of the calcium-phosphate crystals, resulting in the formation of fine rod-like apatite whose habit and orientation were similar to that of authentic tooth enamel crystals. The significant modulating effect of the amelogenin matrix combined with fluoride ions suggests the potential for this artificial system to contribute to the engineering of novel enamel-like biomaterials in vitro.

摘要

为了研究牙釉质中的晶体生长是如何由细胞外基质的成分控制的,我们研究了釉原蛋白和氟离子在通过磷酸八钙(OCP)前体途径发生的磷灰石形成中的功能作用。使用阳离子选择性膜系统作为牙釉质形成的模型,我们评估了在天然猪釉原蛋白和氟离子中生长的所得矿物习性。在没有釉原蛋白且存在1或2 ppm氟的情况下,我们分别获得了OCP + 磷灰石和磷灰石。没有釉原蛋白时,晶体为直径约100 - 200 nm的六方棱柱体和锥体。在存在10%釉原蛋白且没有氟的情况下,获得了直径为35 nm的棒状OCP。值得注意的是,釉原蛋白和氟的组合产生了尺寸与前者晶体相似的棒状磷灰石晶体的形成。这些观察结果表明釉原蛋白和氟在调节磷酸钙晶体的习性、尺寸取向和相方面具有协同作用,从而导致形成习性和取向与真实牙釉质晶体相似的细棒状磷灰石。釉原蛋白基质与氟离子的显著调节作用表明该人工系统在体外构建新型釉质样生物材料方面具有潜力。

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