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[基于骨组织形成过程研究TiO₂基移植物微观结构的影响]

[Examination of influence of microstructure of grafts on TiO2 base on the process of bone tissue forming].

作者信息

Zywicka Bogusława, Karuga Ewa, Rutkowska-Gorczyca Małgorzata, Garcarek Jerzy, Jaegermann Zbigniew, Michałowski Sławomir

机构信息

Zakład Chirurgii Eksperymentalnej i Badania Biomateriałów Uniwersytetu Medycznego we Wrocławiu, Polska.

出版信息

Polim Med. 2013 Apr-Jun;43(2):81-91.

Abstract

AIM OF THE STUDY

Evaluation of the influence of the introduced structure modification in porous ceramic grafts on TiO2 base on overgrowing with bone tissue, in examinations with use of scanning microscopy and X-rays was the subject of the examinations.

MATERIAL AND METHOD

New ceramic materials based on TiO2 with high values of mechanical resistance, large sintering degree and biocompatibility in in vitro conditions were prepared. Those properties cause that they are worth interest as potential osteosubstitutive materials. Two kinds of grafts were created from ceramics based on TiO2: with compact and porous structure. The introduced structure modification - macroporosity - had the purpose to give osteoconductive properties to the grafts, to evoke processes favorable for bone tissue forming. In examinations of the local reaction of bone tissue after implantation of the formed porous grafts, degree of their osteointegration, the essential issue is the evaluation of the settling of the inner spaces with supporting tissues. Samples of the tested compact and porous materials in the form of cylinders were implanted in femoral bones of rabbits for a period till 6 months. The surfaces of grafts and the degree of their settling with supporting tissues were evaluated in cross-sections of the implants with light and scanning microscopic methods and they were confirmed in X-ray tests.

RESULTS

Analysis of the obtained data showed that, the surface of solid ceramic on TiO2 base was covered mainly with increasing with a time of observation quantities of extracellular substance and lamellas of bone. The macrporous structure of porous ceramic on TiO2 base enabled settling of the inner spaces of graft with supporting tissue cells, partly in the 1st month, more intensively in the 3rd and it was not completed in the 6th month after implantation.

CONCLUSIONS

Porous grafts in the form of ceramic foam on TiO2 base showed osteoconductive properties, though process of colonization after 6th month observation was not completed and the condition of the cells inside of the implant was reduced.

摘要

研究目的

在使用扫描显微镜和X射线进行的检查中,评估基于TiO₂的多孔陶瓷移植物中引入的结构修饰对骨组织过度生长的影响是检查的主题。

材料与方法

制备了基于TiO₂的新型陶瓷材料,这些材料在体外条件下具有高机械抗性、高烧结度和生物相容性。这些特性使得它们作为潜在的骨替代材料值得关注。基于TiO₂的陶瓷制成了两种移植物:具有致密结构和多孔结构。引入的结构修饰——大孔隙率——旨在赋予移植物骨传导特性,引发有利于骨组织形成的过程。在检查形成的多孔移植物植入后骨组织的局部反应、它们的骨整合程度时,关键问题是评估内部空间被支持组织填充的情况。将圆柱形的测试致密和多孔材料样本植入兔股骨中6个月。用光学和扫描显微镜方法在植入物的横截面中评估移植物的表面及其与支持组织的填充程度,并通过X射线测试进行确认。

结果

对所得数据的分析表明,基于TiO₂的固体陶瓷表面主要覆盖着随观察时间增加的细胞外物质和骨薄片。基于TiO₂的多孔陶瓷移植物的大孔结构使得移植物的内部空间能够被支持组织细胞填充,部分在第1个月,在第3个月更强烈,在植入后第6个月尚未完成。

结论

基于TiO₂的泡沫陶瓷形式的多孔移植物显示出骨传导特性,尽管在观察6个月后定植过程尚未完成,且植入物内部细胞的状况有所下降。

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