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表面固定双膦酸盐可改善大鼠不锈钢螺钉固定效果。

Surface immobilized bisphosphonate improves stainless-steel screw fixation in rats.

作者信息

Tengvall P, Skoglund B, Askendal A, Aspenberg P

机构信息

Department of Physics and Measurement Technology, Biology and Chemistry, Linköping University, SE-581 83, Linköping, Sweden.

出版信息

Biomaterials. 2004 May;25(11):2133-8. doi: 10.1016/j.biomaterials.2003.08.049.

Abstract

An increase in the mechanical fixation in bone of metallic biomaterials is considered advantageous in joint replacement and fracture surgery. Different approaches to improve fixation may be e.g. surface roughening, Ca-mineral coating or surface immobilization of growth factors or drugs. In the present work, bisphosphonate, a class of drugs that inhibit bone resorption, was immobilized onto stainless-steel screws. The screws were first roughened and coated with immobilized and cross-linked fibrinogen. Subsequently, an N-bisphosphonate, pamidronate, was immobilized onto fibrinogen, and another N-bisphosphonate, ibandronate, adsorbed on top of this. The so coated screws were inserted into the tibiae of eight male Sprague-Dawley rats. Another eight rats received screws prepared in the same way, but without the bisphosphonate coating. Pullout strength tests were performed after 2 weeks of implantation. The results showed a 28% (p=0.0009) higher pullout force and 90% increased pullout energy for the bisphosphonate coated screws, and support the idea that surface immobilized bisphosphonates can be used to improve biomaterials fixation in bone.

摘要

在关节置换和骨折手术中,提高金属生物材料在骨内的机械固定效果被认为是有益的。改善固定的不同方法例如表面粗糙化、钙矿物涂层或生长因子或药物的表面固定。在本研究中,一类抑制骨吸收的药物双膦酸盐被固定在不锈钢螺钉上。首先将螺钉粗糙化并涂覆固定化和交联的纤维蛋白原。随后,将一种N - 双膦酸盐帕米膦酸盐固定在纤维蛋白原上,另一种N - 双膦酸盐伊班膦酸盐吸附在其上面。将如此涂覆的螺钉插入八只雄性Sprague - Dawley大鼠的胫骨中。另外八只大鼠接受以相同方式制备但没有双膦酸盐涂层的螺钉。植入2周后进行拔出强度测试。结果显示,双膦酸盐涂层螺钉的拔出力高28%(p = 0.0009),拔出能量增加90%,这支持了表面固定双膦酸盐可用于改善生物材料在骨内固定的观点。

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