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用于骨重建的碳酸钙-磷酸钙混合骨水泥组合物。

Calcium carbonate-calcium phosphate mixed cement compositions for bone reconstruction.

作者信息

Combes C, Bareille R, Rey C

机构信息

CIRIMAT, UMR CNRS 5085, Equipe Physico-Chimie des Phosphates, ENSIACET, 118 route de Narbonne, 31077 Toulouse cedex 4, France.

出版信息

J Biomed Mater Res A. 2006 Nov;79(2):318-28. doi: 10.1002/jbm.a.30795.

Abstract

The feasibility of making calcium carbonate-calcium phosphate (CaCO(3)-CaP) mixed cements, comprising at least 40% (w/w) CaCO(3) in the dry powder ingredients, has been demonstrated. Several original cement compositions were obtained by mixing metastable crystalline CaCO(3) phases with metastable amorphous or crystalline CaP powders in aqueous medium. The cements set within at most 1 h at 37 degrees C in atmosphere saturated with water. The hardened cement is microporous and exhibits weak compressive strength. The setting reaction appeared to be essentially related to the formation of a highly carbonated nanocrystalline apatite phase by reaction of the metastable CaP phase with part or almost all of the metastable CaCO(3) phase. The recrystallization of metastable CaP varieties led to a final cement consisting of a highly carbonated poorly crystalline apatite analogous to bone mineral associated with various amounts of vaterite and/or aragonite. The presence of controlled amounts of CaCO(3) with a higher solubility than that of the apatite formed in the well-developed CaP cements might be of interest to increase resorption rates in biomedical cement and favors its replacement by bone tissue. Cytotoxicity testing revealed excellent cytocompatibility of CaCO(3)-CaP mixed cement compositions.

摘要

已证明制备碳酸钙 - 磷酸钙(CaCO₃ - CaP)混合水泥的可行性,其在干粉成分中至少包含40%(w/w)的CaCO₃。通过在水介质中将亚稳态结晶CaCO₃相与亚稳态无定形或结晶CaP粉末混合,获得了几种原始水泥组合物。这些水泥在37℃、水饱和的大气中最多1小时内凝固。硬化后的水泥是微孔的,抗压强度较弱。凝固反应似乎主要与亚稳态CaP相和部分或几乎所有亚稳态CaCO₃相反应形成高度碳酸化的纳米晶磷灰石相有关。亚稳态CaP变体的重结晶导致最终的水泥由高度碳酸化的 poorly crystalline磷灰石组成,类似于与各种数量的球霰石和/或文石相关的骨矿物质。与发达的CaP水泥中形成的磷灰石相比,具有更高溶解度的受控量CaCO₃的存在可能有助于提高生物医学水泥的吸收率,并有利于其被骨组织替代。细胞毒性测试显示CaCO₃ - CaP混合水泥组合物具有优异的细胞相容性。

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