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一种脊柱丙烯酸骨水泥的体外细胞-材料相互作用和体内骨整合的评价。

Evaluation of the in vitro cell-material interactions and in vivo osteo-integration of a spinal acrylic bone cement.

机构信息

AO Research Institute, Clavadelerstrasse 8, 7270, Davos Platz, Switzerland.

出版信息

Eur Spine J. 2012 Aug;21 Suppl 6(Suppl 6):S800-9. doi: 10.1007/s00586-011-1945-9. Epub 2011 Aug 3.

Abstract

INTRODUCTION

Polymethylmethacrylate bone cements have proven performance in arthroplasty and represent a common bone filler, e.g. in vertebroplasty. However, acrylic cements are still subject to controversy concerning their exothermic reaction and osteo-integration potential. Therefore, we submitted a highly filled acrylic cement to a systematic investigation on the cell-material and tissue-implant response in vitro and in vivo.

MATERIALS AND METHODS

Cured Vertecem V+ Cements were characterized by electron microscopy. Human bone marrow-derived mesenchymal stem cell morphology, growth and differentiation on the cured cement were followed for 28 days in vitro. The uncured cement was injected in an ovine cancellous bone defect and analysed 4 and 26 weeks post-implantation.

RESULTS

The rough surface of the cement allowed for good stem cells adhesion in vitro. Up-regulation of alkaline phosphatase was detected after 8 days of incubation. No adverse local effects were observed macroscopically and microscopically following 4 and 26 weeks of implantation of the cement into drill-hole defects in ovine distal femoral epiphysis. Direct bone apposition onto the implant surface was observed resulting in extended signs of osteo-integration over time (35.2 ± 24.2% and 88.8 ± 8.8% at week 4 and 26, respectively).

CONCLUSION

Contrary to the established opinion concerning bony tissue response to implanted acrylic bone cements, we observed an early cell-implant in vitro interaction leading to cell growth and differentiation and significant signs of osteo-integration for this acrylic cement using standardized methods. Few outlined limitations, such as the use of low cement volumes, have to be considered in the interpretation of the study results.

摘要

简介

聚甲基丙烯酸甲酯骨水泥在关节置换术中表现出良好的性能,是一种常见的骨填充物,例如在椎体成形术中。然而,关于其放热反应和骨整合潜力,丙烯酸类骨水泥仍存在争议。因此,我们对一种高填充丙烯酸水泥进行了系统的体外和体内细胞-材料和组织-植入反应研究。

材料与方法

通过电子显微镜对固化的 Vertecem V+水泥进行了表征。在体外培养 28 天,研究了人骨髓间充质干细胞在固化水泥上的形态、生长和分化。将未固化的水泥注入绵羊松质骨缺损中,分别在植入后 4 周和 26 周进行分析。

结果

水泥的粗糙表面有利于细胞的良好黏附。孵育 8 天后检测到碱性磷酸酶的上调。在绵羊股骨远端骨骺钻孔缺陷中植入水泥 4 周和 26 周后,宏观和微观均未观察到不良反应。直接在植入物表面形成新骨,随着时间的推移,骨整合的迹象明显增加(第 4 周和第 26 周时分别为 35.2±24.2%和 88.8±8.8%)。

结论

与植入丙烯酸骨水泥引起骨组织反应的既定观点相反,我们观察到了一种早期的细胞-植入物体外相互作用,导致细胞生长和分化,并使用标准化方法观察到该丙烯酸水泥有明显的骨整合迹象。在解释研究结果时,需要考虑到如使用低水泥量等有限的问题。

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本文引用的文献

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[Indications and results of kypho- and vertebroplasty].[后凸成形术和椎体成形术的适应症及结果]
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