Julien Marion, Khairoun Ibrahim, LeGeros Racquel Z, Delplace Severine, Pilet Paul, Weiss Pierre, Daculsi Guy, Bouler Jean Michel, Guicheux Jerome
Inserm, U 791, 1 place A. Ricordeau, Nantes, F-44042, France.
Biomaterials. 2007 Feb;28(6):956-65. doi: 10.1016/j.biomaterials.2006.10.018. Epub 2006 Nov 22.
Calcium phosphate cements (CPCs) are successfully used as bone substitutes in dentistry and orthopaedic applications. This study investigated the physico-chemical-mechanical properties of and in vitro biological properties (cell response) of CPCs prepared with amorphous calcium carbonate phosphate (ACCP) doped with magnesium (ACCP-Mg), zinc (ACCp-Zn) or fluoride (ACCP-F) ions. The experimental CPC consisted of alpha-TCP, doped ACCP, and MPCM powders as matrix and biphasic calcium phosphate (BCP) granules. X-ray diffraction analysis showed that the matrix converted to apatite with poor crystallinity (reflecting small crystal size) after setting for 24 h, while BCP remained apparently unchanged. Cements with ACCP-F (F-CPC) had shorter setting times and greater compressive strength compared to cements with ACCP-Mg (Mg-CPC) or ACCP-Zn (Zn-CPC). Scanning electron microscopy (SEM) showed that crystals set on Mg-CPC and Zn-CPC were smaller compared to those on F-CPC. The total porosity of Mg-CPC was greater compared to Zn-CPC or F-CPC. Osteoblast-like cells, MC3T3-E1, remained viable and maintained their ability to express alkaline phosphatase in contact with the CPCs with doped ACCPs.
磷酸钙骨水泥(CPCs)已成功用作牙科和骨科应用中的骨替代物。本研究调查了掺杂镁(ACCP-Mg)、锌(ACCP-Zn)或氟(ACCP-F)离子的无定形碳酸钙磷酸盐(ACCP)制备的CPCs的物理化学机械性能和体外生物学性能(细胞反应)。实验性CPC由α-TCP、掺杂的ACCP和MPCM粉末作为基质以及双相磷酸钙(BCP)颗粒组成。X射线衍射分析表明,基质在凝固24小时后转变为结晶度较差的磷灰石(反映晶体尺寸较小),而BCP明显保持不变。与含有ACCP-Mg(Mg-CPC)或ACCP-Zn(Zn-CPC)的骨水泥相比,含有ACCP-F的骨水泥(F-CPC)凝固时间更短,抗压强度更高。扫描电子显微镜(SEM)显示,与F-CPC上的晶体相比,Mg-CPC和Zn-CPC上凝固的晶体更小。Mg-CPC的总孔隙率比Zn-CPC或F-CPC更大。成骨样细胞MC3T3-E1在与掺杂ACCPs的CPCs接触时仍保持活力,并维持其表达碱性磷酸酶的能力。