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无牙患者应用β-磷酸三钙(β-TCP)行上颌窦提升术:一项锥形束 CT 和拉曼研究。

Maxillary Sinus Lift with Beta-Tricalcium Phosphate (β-TCP) in Edentulous Patients: A Nanotomographic and Raman Study.

机构信息

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

CFI, Collège Français d'Implantologie, 6, rue de Rome, 75005, Paris, France.

出版信息

Calcif Tissue Int. 2017 Sep;101(3):280-290. doi: 10.1007/s00223-017-0280-5. Epub 2017 Apr 26.

Abstract

Sinus lift elevation restores bone mass at the maxilla in edentulate patients before the placement of dental implants. It consists of opening the lateral side of the sinus and grafting beta-tricalcium phosphate granules (β-TCP) under the olfactory membrane. Bone biopsies were obtained in five patients after 60 weeks. They were embedded undecalcified in poly(methyl methacrylate) (pMMA); blocks were analyzed by nanocomputed tomography (nanoCT); specific areas were studied by Raman microspectroscopy. Remnants of β-TCP were osseointegrated and covered with mineralized bone; osteoid tissue was also filling the inner porosity. Macrophages having engulfed numerous β-TCP grains were observed in marrow spaces. β-TCP was identified by nanoCT as osseointegrated particles and as granules in the cytoplasm of macrophages. Raman microspectroscopy permitted to compare the spectra of β-TCP and bone in different areas. The ratio of the ~820 cm band of pMMA (-CH groups) on the ν1 phosphate band at 960 cm reflected tissue hydration because water was substituted by MMA during histological processing. In bone, the ratio of the ~960 cm phosphate to the amide 1 band and the ratio ν2 phosphate band by the 1240-1250 amide III band reflect the mineralization degree. Specific bands of β-TCP were found in osseointegrated β-TCP granules and in the grains phagocytized by the macrophages. The hydration degree was maximal for β-TCP phagocytized by macrophages. Raman microspectroscopy associated with nanoCT is a powerful tool in the analysis of the biomaterial degradation and osseointegration.

摘要

鼻窦提升术在牙种植体植入前,可恢复无牙患者上颌骨的骨量。它包括打开鼻窦的外侧,并在嗅膜下移植β-磷酸三钙颗粒(β-TCP)。在 60 周后,从五名患者中获得了骨活检。它们未脱钙嵌入聚甲基丙烯酸甲酯(pMMA)中;通过纳米计算机断层扫描(nanoCT)分析块;通过拉曼微光谱分析特定区域。β-TCP 的残留物与骨整合,并被矿化骨覆盖;成骨组织也填充了内部孔隙。在骨髓腔中观察到吞噬了大量β-TCP 颗粒的巨噬细胞。nanoCT 鉴定β-TCP 为骨整合颗粒和巨噬细胞质中的颗粒。拉曼微光谱允许比较不同区域的β-TCP 和骨的光谱。在 ν1 磷酸带 960cm 处的 pMMA(-CH 基团)的820cm 带与反映组织水合程度的ν2 磷酸带的比值由于 MMA 在组织学处理过程中取代了水。在骨中,960cm 磷酸与酰胺 1 带的比值以及 ν2 磷酸带与 1240-1250cm 酰胺 III 带的比值反映了矿化程度。在与骨整合的β-TCP 颗粒和被巨噬细胞吞噬的颗粒中发现了β-TCP 的特定带。被巨噬细胞吞噬的β-TCP 的水合程度最高。拉曼微光谱与 nanoCT 相结合是分析生物材料降解和骨整合的有力工具。

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