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首页> 外文期刊>Journal of biomedical materials research, Part A >Effect of calcium carbonate on hardening, physicochemical properties, and in vitro degradation of injectable calcium phosphate cements.
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Effect of calcium carbonate on hardening, physicochemical properties, and in vitro degradation of injectable calcium phosphate cements.

机译:碳酸钙对可注射磷酸钙水泥的硬化,理化性质和体外降解的影响。

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摘要

The main disadvantage of apatitic calcium phosphate cements (CPCs) is their slow degradation rate, which limits complete bone regeneration. Carbonate (CO?2?) is the common constituent of bone and it can be used to improve the degradability of the apatitic calcium phosphate ceramics. This study aimed to examine the effect of calcite (CaCO?) incorporation into CPCs. To this end, the CaCO? amount (0-4-8-12 wt %) and its particle size (12.0-μm-coarse or 2.5-μm-fine) were systematically investigated. In comparison to calcite-free CPC, the setting time of the bone substitute was delayed with increasing CaCO? incorporation. Reduction of the CaCO? particle size in the initial powder increased the injectability time of the paste. During hardening of the cements, the increase in calcium release was inversely proportional to the extent of CO?2? incorporation into apatites. The morphology of the carbonate-free product consisted of large needle-like crystals, whereas small plate-like crystals were observed for carbonated apatites. Compressive strength decreased with increasing CaCO? content. In vitro accelerated degradation tests demonstrated that calcium release and dissolution rate from the set cements increased with increasing the incorporation of CO?2?, whereas differences in CaCO? particle size did not affect the in vitro degradation rate under accelerated conditions.
机译:磷灰石磷酸钙水泥(CPC)的主要缺点是其降解速度慢,这限制了骨骼的完全再生。碳酸盐(CO 2 2 3)是骨骼的常见成分,可用于改善磷灰石磷酸钙陶瓷的降解性。这项研究旨在检验方解石(CaCO3)掺入CPC的效果。为此,CaCO?系统地研究了其含量(0-4-8-12 wt%)及其粒度(粗12.0-μm或细2.5-μm)。与无方解石的CPC相比,随着CaCO 3含量的增加,骨替代物的凝固时间被延迟。成立。减少CaCO?初始粉末中的颗粒尺寸增加了糊剂的可注射时间。在水泥硬化过程中,钙释放量的增加与CO 2的含量成反比。掺入磷灰石中。无碳酸盐产物的形貌由大的针状晶体组成,而对于碳酸盐磷灰石则观察到小的板状晶体。抗压强度随CaCO 3增加而降低。内容。体外加速降解试验表明,固结水泥中的钙释放和溶出速率随CO 2 2 +掺入量的增加而增加,而CaCO 3的差异则更大。颗粒尺寸不影响加速条件下的体外降解速率。

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