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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Phase conversion of tricalcium phosphate into Ca-deficient apatite during sintering of hydroxyapatite-tricalcium phosphate biphasic ceramics.
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Phase conversion of tricalcium phosphate into Ca-deficient apatite during sintering of hydroxyapatite-tricalcium phosphate biphasic ceramics.

机译:磷酸盐三钙双相陶瓷烧结过程中磷酸三钙磷酸盐中磷酸盐中的相转化。

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摘要

In this study, we report a new observation on the phase conversion that occurs during the sintering of hydroxyapatite (HA)-tricalcium phosphate (TCP) biphasic ceramics. During the sintering of the HA-TCP mixture powders, a large amount of TCP was converted into HA, as detected by X-ray diffraction. The amount of TCP transformed into HA was approximately 10-90% of that initially added. From the electron probe microscopy analysis, the HA transformed from TCP was found to be Ca-deficient with Ca/P ratios of 1.62-1.64. The dissolution behavior and osteoblastic responses in a series of HA-TCP biphasic ceramics (10-90% TCP) were assessed. The solubility of the HA-TCP biphasic ceramics was intermediate between that of the HA and TCP pure ceramics. However, in the case of the HA-90% TCP biphasic ceramic, the solubility was even higher than that of pure TCP. The cell proliferation and alkaline phosphatase activity of the cells on the biphasic ceramics were lower than those on pure HA, but higher than those on pure TCP. However, particularly in the HA-50% TCP biphasic composition, the cellular responses were significantly higher than those on pure HA. It is considered that the Ca-deficient apatite newly formed from the TCP may affect in some way the solubility and biological properties of the HA-TCP biphasic ceramics.
机译:在这项研究中,我们报告了对羟基磷灰石(HA)磷酸盐(TCP)双相陶瓷烧结期间发生的相相转化的新观察。在HA-TCP混合物粉末烧结期间,通过X射线衍射检测到大量的TCP转化为HA。转化为HA的TCP的量约为最初添加的10-90%。从电子探针显微镜分析中,发现从TCP转化的HA是Ca / P比率为1.62-1.64的Ca缺陷。评估一系列HA-TCP双相陶瓷(10-90%TCP)中的溶出行为和骨细胞反应。 HA-TCP双相陶瓷的溶解度是HA和TCP纯陶瓷的中间体。然而,在HA-90%TCP双相陶瓷的情况下,溶解度甚至高于纯TCP的溶解度。双相陶瓷上细胞的细胞增殖和碱性磷酸酶活性低于纯HA上的细胞,但高于纯TCP的细胞。然而,特别是在HA-50%TCP双相组合物中,细胞反应显着高于纯HA上的反应。认为,从TCP新形成的Ca缺陷磷灰石可能以某种方式影响HA-TCP双相陶瓷的溶解度和生物学性质。

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