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掺杂无定形磷酸钙的磷酸钙骨水泥的物理化学机械性能及体外生物学性能

Physico-chemical-mechanical and in vitro biological properties of calcium phosphate cements with doped amorphous calcium phosphates.

作者信息

Julien Marion, Khairoun Ibrahim, LeGeros Racquel Z, Delplace Severine, Pilet Paul, Weiss Pierre, Daculsi Guy, Bouler Jean Michel, Guicheux Jerome

机构信息

Inserm, U 791, 1 place A. Ricordeau, Nantes, F-44042, France.

出版信息

Biomaterials. 2007 Feb;28(6):956-65. doi: 10.1016/j.biomaterials.2006.10.018. Epub 2006 Nov 22.

Abstract

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.

摘要

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。

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