氧化锌钙磷陶瓷与苹果酸-钙(OH)/亚2/维生素E复合材料修复骨缺损

A. Longo, B. Mehling, P. Barre, D. Snead, A. Taylor, D. Reynolds, P. K. Bajpai
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摘要

本研究的目的是开发一种含有抗生素的可吸收锌钙磷陶瓷氧化物(ZCAP)有机酸-维生素E复合材料,用于骨科和/或牙科应用,包括几乎所有硬组织创伤病例。由3.0 g ZCAP, 1.2 g苹果酸,0.6 g Ca(OH)/sub 2/, 9.6 mg硫酸庆大霉素和20 pl维生素E油组成的复合材料在5/16"模具中压缩成0.1 g颗粒,在液压机中负载2000磅。实验动物的右股骨采用常规手术方法。在直视下使用外科骨锯造成中骨干骨折。将一根0.62螺纹的k针插入髓内管,用钻头逆行穿过膝关节。植入物放置在骨折两端之间,k线通过颗粒顺行进入股骨近端,并进行测试以确保良好的固定。用钢丝钳将从骨头中伸出的k形钢丝与骨头的末端切平。采用常规手术程序关闭手术部位。术后10周实验期内,各组大鼠运动正常。安乐死动物的大体形态学检查显示缺损填充。骨骼的x线检查显示复合材料的吸收,骨愈合和松质骨长入的证据。然而,新骨长入比缺损两侧的皮质骨密度小。迄今为止收集的数据表明,ZCAP复合材料可以用作骨骨折两端之间的骨传导填料。
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A zinc calcium phosphorous oxide ceramic and malic acid-Ca(OH)/sub 2/-vitamin E composite for repairing bone defects
The objective of this investigation was to develop a resorbable zinc calcium phosphorous ceramic oxide (ZCAP) organic acid-vitamin E composite containing an antibiotic for orthopedic and/or dental application, including nearly all cases of trauma of hard tissues. A composite consisting of 3.0 g ZCAP, 1.2 g malic acid, 0.6 g Ca(OH)/sub 2/, 9.6 mg gentamicin sulfate and 20 pl of vitamin E oil was compressed in a 5/16" die into 0.1 g pellets at a load of 2000 lbs in a hydraulic press. The right femur of experimental animals was accessed by routine surgical procedures. A mid-diaphyseal fracture was created under direct vision using a surgical bone saw. A 0.62 threaded K-wire was inserted into the intramedullary canal and retrograded through the knee using a drill. The implant was placed between the two ends of the fracture and the K-wire antegraded through the pellet into the proximal end of the femur and tested to assure good fixation. The K-wire protruding from the bone was cut flush with the end of the bone using wire cutters. The surgical site was closed using routine surgical procedures. Post surgery, each rat showed normal movement during the ten week experimental period. Gross morphological examination of euthanized animals showed filling of the defect. Radiographic examination of the bones showed resorption of the composite, evidence of bone healing and cancellous bone ingrowth. However, the new bone ingrowth appeared less dense than the cortical bone on either side of the defect. The data collected to date suggest that ZCAP composites can be used as osteoconductive fillers between two fractured ends of a bone.
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