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无定形磷酸钙及其在牙科中的应用。

Amorphous calcium phosphate and its application in dentistry.

作者信息

Zhao Jie, Liu Yu, Sun Wei-Bin, Zhang Hai

机构信息

Stomatological Hospital, Nanjing University Medical School, 30 Zhongyang Road, Nanjing 210008, China.

出版信息

Chem Cent J. 2011 Jul 8;5:40. doi: 10.1186/1752-153X-5-40.

Abstract

Amorphous Calcium Phosphate (ACP) is an essential mineral phase formed in mineralized tissues and the first commercial product as artificial hydroxyapatite. ACP is unique among all forms of calcium phosphates in that it lacks long-range, periodic atomic scale order of crystalline calcium phosphates. The X-ray diffraction pattern is broad and diffuse with a maximum at 25 degree 2 theta, and no other different features compared with well-crystallized hydroxyapatite. Under electron microscopy, its morphological form is shown as small spheroidal particles in the scale of tenths nanometer. In aqueous media, ACP is easily transformed into crystalline phases such as octacalcium phosphate and apatite due to the growing of microcrystalline. It has been demonstrated that ACP has better osteoconductivity and biodegradability than tricalcium phosphate and hydroxyapatite in vivo. Moreover, it can increase alkaline phosphatase activities of mesoblasts, enhance cell proliferation and promote cell adhesion. The unique role of ACP during the formation of mineralized tissues makes it a promising candidate material for tissue repair and regeneration. ACP may also be a potential remineralizing agent in dental applications. Recently developed ACP-filled bioactive composites are believed to be effective anti-demineralizing/remineralizing agents for the preservation and repair of tooth structures. This review provides an overview of the development, structure, chemical composition, morphological characterization, phase transformation and biomedical application of ACP in dentistry.

摘要

无定形磷酸钙(ACP)是矿化组织中形成的一种重要矿物相,也是作为人工羟基磷灰石的首个商业产品。ACP在所有形式的磷酸钙中独一无二,因为它缺乏结晶磷酸钙那种长程、周期性的原子尺度有序结构。其X射线衍射图谱宽且弥散,在2θ为25度时有一个最大值,与结晶良好的羟基磷灰石相比没有其他不同特征。在电子显微镜下,其形态表现为十分之几纳米尺度的小球形颗粒。在水性介质中,由于微晶的生长,ACP很容易转变成诸如磷酸八钙和磷灰石等结晶相。已经证明,在体内ACP比磷酸三钙和羟基磷灰石具有更好的骨传导性和生物降解性。此外,它能增加间充质细胞的碱性磷酸酶活性,增强细胞增殖并促进细胞黏附。ACP在矿化组织形成过程中的独特作用使其成为组织修复和再生的一种很有前景的候选材料。ACP在牙科应用中也可能是一种潜在的再矿化剂。最近开发的填充ACP的生物活性复合材料被认为是用于牙齿结构保存和修复的有效抗脱矿/再矿化剂。本文综述了ACP在牙科领域的发展历程、结构、化学成分、形态表征、相变及生物医学应用。

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