Combes C, Miao Baoji, Bareille Reine, Rey Christian
CIRIMAT, UMR CNRS 5085, Equipe Physico-Chimie des Phosphates, ENSIACET, 118 route de Narbonne, 31077 Toulouse Cedex 4, France.
Biomaterials. 2006 Mar;27(9):1945-54. doi: 10.1016/j.biomaterials.2005.09.026. Epub 2005 Oct 10.
The feasibility of calcium carbonate cements involving the recrystallisation of metastable calcium carbonate varieties has been demonstrated. Calcium carbonate cement compositions presented in this paper can be prepared straightforwardly by simply mixing water (liquid phase) with two calcium carbonate phases (solid phase) which can be easily obtained by precipitation. An original cement composition was obtained by mixing amorphous calcium carbonate and vaterite with an aqueous medium. The cement set and hardened within 2h at 37 degrees C in an atmosphere saturated with water and the final composition of the cement consisted mostly of aragonite. The hardened cement was microporous and showed poor mechanical properties. Cytotoxicity tests revealed excellent cytocompatibility of calcium carbonate cement compositions. Calcium carbonates with a higher solubility than the apatite formed for most of the marketed calcium phosphate cements might be of interest to increase biomedical cement resorption rates and to favour its replacement by bone tissue.
涉及亚稳态碳酸钙变体重结晶的碳酸钙水泥的可行性已得到证实。本文介绍的碳酸钙水泥组合物可以通过简单地将水(液相)与两种碳酸钙相(固相)混合直接制备,这两种碳酸钙相可以通过沉淀轻松获得。通过将无定形碳酸钙和球霰石与水性介质混合获得了一种原始水泥组合物。该水泥在37℃、水饱和的气氛中2小时内凝固并硬化,水泥的最终组合物主要由文石组成。硬化后的水泥是微孔的,机械性能较差。细胞毒性测试表明碳酸钙水泥组合物具有优异的细胞相容性。对于大多数市售磷酸钙水泥而言,溶解度高于所形成磷灰石的碳酸钙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。