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镧掺杂磷灰石的表征、物理化学性质及生物相容性。

Characterization, physicochemical properties and biocompatibility of La-incorporated apatites.

机构信息

State Key Laboratory for Mechanical Behavior of Materials, Xi'an Jiaotong University, Xi'an, Shaanxi 710049, China.

出版信息

Acta Biomater. 2009 Nov;5(9):3512-23. doi: 10.1016/j.actbio.2009.05.026. Epub 2009 May 27.

Abstract

In this study, the physicochemical properties and biocompatibilities of La-containing apatites were intensively investigated together with their characterizations in terms of composition, structure, valent state and morphology using X-ray diffraction, Fourier-transform infrared spectra, X-ray photoelectron spectroscopy, scanning electron microscopy and energy dispersive X-ray spectroscopy, respectively. The results indicate that the La(3+) ion can be incorporated into the crystal lattice of hydroxyapatite resulting in the production of La-incorporated apatites (La(x)Ca(10-x)(PO(4))(6)(OH)(2+x-2y)O(y square y-x) (x> or =0.5, y<1+x/2) or La(x)Ca(10-x)(PO(4))(6)O(y square y-x) (0.5<x<2, y=1+x/2)) by high-temperature solid phase synthesis. For La content <20%, the product is composed of the major phase, La(x)-OAP, as well as a small amount of tricalcium phosphate, but for a La content of 20%, the product is pure La-incorporated oxyapatite with the formula La(2)Ca(8)(PO(4))(6)O(2) (La(2)-OAP, x=2, y=2). It is also found that the La content plays important roles in both the physicochemical properties and biocompatibilities of the La-incorporated apatites. In contrast to La-free apatite, La-incorporated apatites possess a series of attractive properties, including higher thermal stability, higher flexural strength, lower dissolution rate, larger alkaline phosphatase activity, preferable osteoblast morphology and comparable cytotoxicity. In particular, the sintered La-incorporated apatite block achieves a maximal flexure strength of 66.69+/-0.98 MPa at 5% La content (confidence coefficient 0.95), increased 320% in comparison with the La-free apatite. The present study suggests that the La-incorporated apatite possesses application potential in developing a new type of bioactive coating material for metal implants and also as a promising La carrier for further exploring the beneficial functions of La in the human body.

摘要

在这项研究中,通过 X 射线衍射、傅里叶变换红外光谱、X 射线光电子能谱、扫描电子显微镜和能谱分别对含 La 磷灰石的物理化学性质和生物相容性及其组成、结构、价态和形态进行了深入研究。结果表明,La(3+)离子可以掺入羟基磷灰石晶格中,生成 La 掺杂磷灰石(La(x)Ca(10-x)(PO(4))(6)(OH)(2+x-2y)O(y square y-x) (x>=0.5, y<1+x/2)或 La(x)Ca(10-x)(PO(4))(6)O(y square y-x) (0.5<x<2, y=1+x/2))通过高温固相合成。对于 La 含量<20%,产物由主要相 La(x)-OAP 和少量的磷酸三钙组成,但对于 La 含量为 20%时,产物是纯 La 掺杂的氧磷灰石,化学式为 La(2)Ca(8)(PO(4))(6)O(2) (La(2)-OAP, x=2, y=2)。还发现,La 含量对 La 掺杂磷灰石的物理化学性质和生物相容性都有重要作用。与不含 La 的磷灰石相比,La 掺杂的磷灰石具有一系列吸引人的性质,包括更高的热稳定性、更高的弯曲强度、更低的溶解率、更大的碱性磷酸酶活性、更好的成骨细胞形态和相当的细胞毒性。特别是,在 5%La 含量时,烧结的 La 掺杂磷灰石块体的弯曲强度达到 66.69+/-0.98 MPa(置信系数 0.95),与不含 La 的磷灰石相比增加了 320%。本研究表明,La 掺杂磷灰石具有在开发新型金属植入物生物活性涂层材料方面的应用潜力,也有望作为进一步探索 La 在人体中有益功能的 La 载体。

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