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通过纳米计算机断层扫描和扫描电子显微镜对不同配方制备的β-磷酸三钙颗粒进行分析。

Analysis of β-tricalcium phosphate granules prepared with different formulations by nano-computed tomography and scanning electron microscopy.

作者信息

Terranova Lisa, Libouban Hélène, Mallet Romain, Chappard Daniel

机构信息

GEROM Groupe Etudes Remodelage Osseux et BioMatériaux-LHEA, IRIS-IBS Institut de Biologie en Santé, CHU d'Angers, LUNAM Université, 49933, Angers Cedex, France.

SCIAM, Service Commun d'Imagerie et Analyses Microscopiques, IRIS-IBS Institut de Biologie en Santé, CHU d'Angers, LUNAM Université, 49933, Angers Cedex, France.

出版信息

J Artif Organs. 2015 Dec;18(4):338-45. doi: 10.1007/s10047-015-0838-9. Epub 2015 Apr 22.

Abstract

Among biomaterials used for filling bone defects, beta-tricalcium phosphate (β-TCP) is suitable in non-bearing bones, particularly in dental implantology, oral and maxillofacial surgery. When β-TCP granules are placed in a bone defect, they occupy the void 3D volume. Little is known about the 3D arrangement of the granules, which depends on the nature and size of the granules. The aim of this study was to examine the 3D architecture of porous β-TCP granules. Granules were prepared with different concentrations of β-TCP powder in slurry (10, 11, 15, 18, 21, and 25 g of β-TCP powder in distilled water). Granules were prepared by the polyurethane foam method. They were analyzed by nano-computed tomography (nanoCT) and compared with scanning electron microscopy (SEM). Commercial granules of hydroxyapatite-β-TCP prepared by the same methodology were also used. The outer and inner architectures of the granules were shown by nanoCT which evidenced macroporosity, internal porosity and microporosity between the sintered grains. Macroporosity was reduced at high concentration and conversely, numerous concave surfaces were observed. Internal porosity, related to the sublimation of the polyurethane foam, was present in all the granules. Microporosity at the grain joints was evidenced by SEM and on 2D nanoCT sections. Granules presented a heterogeneous aspect due to the different mineralization degree of the sintered powder grains in the β-TCP granules; the difference between hydroxyapatite and β-TCP was also evidenced. NanoCT is an interesting method to analyze the fine morphology of biomaterials with a resolution close to synchrotron and better than microcomputed tomography.

摘要

在用于填充骨缺损的生物材料中,β-磷酸三钙(β-TCP)适用于非承重骨,尤其是在牙种植学、口腔颌面外科中。当将β-TCP颗粒置于骨缺损处时,它们占据三维空间的空隙。关于颗粒的三维排列知之甚少,这取决于颗粒的性质和大小。本研究的目的是研究多孔β-TCP颗粒的三维结构。通过在浆料中加入不同浓度的β-TCP粉末(10、11、15、18、21和25克β-TCP粉末溶于蒸馏水中)制备颗粒。采用聚氨酯泡沫法制备颗粒。通过纳米计算机断层扫描(nanoCT)对其进行分析,并与扫描电子显微镜(SEM)进行比较。还使用了通过相同方法制备的羟基磷灰石-β-TCP商业颗粒。nanoCT显示了颗粒的外部和内部结构,证实了烧结颗粒之间存在大孔隙、内部孔隙和微孔隙。高浓度时大孔隙率降低,相反,观察到许多凹面。与聚氨酯泡沫升华有关的内部孔隙存在于所有颗粒中。SEM和二维nanoCT切片证实了颗粒连接处存在微孔隙。由于β-TCP颗粒中烧结粉末颗粒的矿化程度不同,颗粒呈现出不均匀的外观;羟基磷灰石和β-TCP之间的差异也得到了证实。NanoCT是一种分析生物材料精细形态的有趣方法,其分辨率接近同步加速器,优于微计算机断层扫描。

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