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具有双相磷酸三钙的多相磷酸钙骨水泥的制备及体内评价。

Processing and in vivo evaluation of multiphasic calcium phosphate cements with dual tricalcium phosphate phases.

机构信息

Department of Biomaterials, College of Dental Science, Radboud University Nijmegen Medical Centre, 6500 HB Nijmegen, The Netherlands.

出版信息

Acta Biomater. 2012 Sep;8(9):3500-8. doi: 10.1016/j.actbio.2012.05.033. Epub 2012 May 29.

Abstract

Calcium phosphate cements (CPCs) use the simultaneous presence of several calcium phosphates phases. This is done to generate specific bulk and in vivo properties. This work has processed and evaluated novel multiphasic CPCs containing dual tricalcium phosphate (TCPs) phases. Dual TCPs containing α- and β-TCP phases were obtained by thermal treatment. Standard CPC (S-CPC) was composed of α-TCP, anhydrous dicalcium phosphate and precipitated hydroxyapatite, while modified CPC (DT-CPC) included both α- and β-TCP. Physicochemical characterization of these CPCs was based on scanning electron microscopy, X-ray diffraction, specific surface area (SSA) and particle size (PS) analysis and mechanical properties. This characterization allowed the selection of one DT-CPC for setting time, cohesion and biological assessment compared with S-CPC. Biological assessment was carried out using a tibial intramedullary cavity model and subcutaneous pouches in guinea pigs. Differences in the surface morphology and crystalline phases of the treated TCPs were detected, although PS analysis of the milled CPC powders produced similar results. SSA analysis was significantly higher for DT-CPC with α-TCP treated at 1100°C for 5h. Poorer mechanical properties were found for DT-CPC with α-TCP treated at 1000°C. Setting time and cohesion, as well as the in vivo performance, were similar in the selected DT-CPC and the S-CPC. Both CPCs created the desired host reactions in vivo.

摘要

磷酸钙骨水泥 (CPCs) 利用多种磷酸钙相的同时存在。这样做是为了产生特定的整体和体内性能。这项工作已经加工和评估了含有双相磷酸三钙 (TCPs) 的新型多相 CPC。通过热处理获得含有 α-TCP 和 β-TCP 相的双 TCP。标准 CPC(S-CPC)由 α-TCP、无水磷酸二钙和沉淀羟基磷灰石组成,而改性 CPC(DT-CPC)则包括 α-TCP 和 β-TCP。这些 CPC 的物理化学特性基于扫描电子显微镜、X 射线衍射、比表面积(SSA)和粒径(PS)分析以及机械性能进行评估。与 S-CPC 相比,这种特性分析选择了一种 DT-CPC 用于凝固时间、内聚性和生物评估。生物评估是使用兔胫骨髓内腔模型和豚鼠皮下囊进行的。尽管对研磨的 CPC 粉末进行 PS 分析产生了相似的结果,但仍检测到处理 TCP 的表面形貌和结晶相的差异。DT-CPC 的 SSA 分析明显高于在 1100°C 下处理 5 小时的 α-TCP。在 1000°C 下处理的 α-TCP 的 DT-CPC 的机械性能较差。所选 DT-CPC 和 S-CPC 的凝固时间、内聚性和体内性能相似。两种 CPC 在体内均产生了预期的宿主反应。

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